NUCLEODUR Reversed Phase Packings

Size: px
Start display at page:

Download "NUCLEODUR Reversed Phase Packings"

Transcription

1 NUCLEODUR Reversed Phase Packings In RP liquid chromatography the efficiency of the packing is strongly affected by the quality of the base silica itself. Shortcomings in the surface geometry of the particles or metal contaminants are the main reasons for inadequate coverage with the covalently bonded alkylsilanes in the subsequent derivatization steps. It is well known, that poor surface coverage and, in consequence, high activity of residual free silanols often results in peak tailing or adsorption, particularly with basic compounds. NUCLEODUR Particle Shape and Surface Symmetry Billiard Balls in HPLC NUCLEODUR silicas are synthesized in a unique and carefully controlled manufacturing process which provides silica particles, which are totally spherical. The pictures show the uniform particle size distribution and the outstanding smoothness of the NUCLEODUR surface is emphasized. Fig. : High performance totally spherical NUCLEODUR silica Fig. : Surface of a NUCLEODUR particle (magnified) NUCLEODUR Purity Intolerant Towards Metals As already mentioned above, a highly pure silica is required for achieving symmetric peak shapes and maximum resolution. Inclusions of e.g. iron or alkaline earth metal ions on the silica surface are largely responsible for the unwanted interactions with ionizable analytes, e.g. amines or phenolic compounds. NUCLEODUR is virtually free of metal impurities and low acidic surface silanols. Elemental analysis data of NUCLEODUR µm measured by AAS are listed beside. Aluminium < ppm Iron < ppm Sodium < ppm Calcium < 0 ppm Titanium < ppm Zirconium < ppm Arsenic < 0. ppm Mercury < 0.0 ppm Elementary analysis (metal ions) of NUCLEODUR 00-

2 NUCLEODUR Reversed Phase Packings NUCLEODUR Pressure Stability Hard as a Rock The totally spherical and 00% synthetic silica gel exhibits an outstanding mechanical stability, even at high pressures and elevated eluent flow rates. In addition, after several cycles of repeated packing, no significant drop in pressure can be observed. The latter is of prime importance for preparative and process-scale applications. 0 min Column: x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile water (80:0, v/v) Temperature: C Detection: UV, nm 0 inj. 00 inj. 0 inj. 00 inj. 0 inj. start. Phenol. Naphthalene. Anthracene back pressure [bar] Packing # Fig. : Column stability of NUCLEODUR 00- C 8 ec Fig. : Repeated packing NUCLEODUR C 8 ec the Workhorse for Daily Routine Analysis and Up-Scaling for Preparative HPLC The efficiency of a separation is controlled by particle size and selectivity of the stationary phase. The exceptional surface coverage of monomeric bonded alkylsilanes, combined with an exhaustive endcapping, results in a surface with lowest silanol activity. This allows the tailing-free elution of polar compounds such as basic drugs. NUCLEODUR C 8 ec is available in 9 different particle sizes (,, 7, 0,,, 0, 0 and 0 µm) which cover the whole range from high speed analytical HPLC up to medium and low pressure prep LC. NUCLEODUR C 8 ec is also an ideal tool for scale-up purposes. Surface area (BET) 0 m /g Pore size 0 Å Pore volume 0.9 ml/g Carbon load 7. % Physical data of NUCLEODUR C 8 ec

3 NUCLEODUR C 8 Gravity The column for method development HPLC at ph extremes overall sophisticated analytical separations Base deactivation NUCLEODUR C 8 Gravity is based on the ultrapure NUCLEODUR silica, which is described above. An unique derivatization process generates a homogeneous surface with a high density of bonded silanes (carbon content ~ 8%). The following thorough endcapping suppresses any unwanted polar interactions between the silica surface and the sample, which makes Gravity particularly suitable for the separation of basic and other ionizable analytes. Figure shows a comparison study, where the strongly basic amitriptyline is eluted on various highly base deactivated C 8 phases under isocratic conditions. More examples to emphasize the outstanding suitability of the NUCLEODUR C 8 Gravity phase are shown below (figures and 7) and in the application section of this brochure. Phase S (C 8, µm) Phase P (C 8, µm) Phase L (C 8, µm) and overlap Phase I (C 8, µm) NUCLEODUR C 8 Gravity, µm 0 0 min Columns: 0 x mm Eluent: methanol 0 mm KH PO, ph 7.0 (7 :, v/v). Dibutyl phthalate Flow rate:.0 ml/min. Acenaphthene Temperature: 0 C. Amitriptyline Detection: UV, nm Fig. : Comparison of different base deactivated phases. Pyridine. Phenol min Column: 0 x mm NUCLEODUR C 8 Gravity, µm Eluent: methanol 0 mm KH PO, ph 7.0 (7 :, v/v) Flow rate:.0 ml/min Detection: UV, nm Temperature: 0 C Inj. volume: µl 0 0 min Column: 0 x mm NUCLEODUR C 8 Gravity, µm Eluent: methanol water (0 : 70, v/v) Flow rate:.0 ml/min Detection: UV, nm Temperature: 0 C Inj. volume: µl Fig. : Separation of pyridine and phenol. Uracil.,7-Dihydroxynaphthalene.,-Dihydroxynaphthalene. Lidocaine. Toluene Fig. 7: Selectivity test. Naphthalene 7. Ethylbenzene 8. Dibutyl phthalate 9. Acenaphthene 0. Amitriptyline

4 NUCLEODUR C 8 Gravity Enhanced ph Stability One major disadvantage of using silica stationary phases is the limited stability at strongly acidic or basic ph ranges. Cleavage of the siloxane bonding by hydrolysis, or dissolution of the silica will rapidly lead to a considerable loss in column performance. Therefore conventional RP phases are usually not recommended to be run with mobile phases at ph > 8 or ph < for extended periods of time. The special surface bonding technology and the low concentration of trace elements of NUCLE- ODUR C 8 Gravity allow for use at an expanded ph range from ph to. When is enhanced ph stability beneficial? The option to work at an expanded ph range is often required in method development. Many nitrogen containing compounds like basic drugs are protonated at acidic or neutral ph and exhibit poor retention on a standard C 8 phase. The retention behavior can be improved by working at a higher ph, where the analyte is no longer protonated, but formally neutrally charged, as a rule between ph 9 0. For acidic analytes it is exactly in inverse proportion, maximum retention can be attained at low ph. Figure 8 shows the extent of protonation of surface silanols and of two exemplary analytes at acidic and alkaline ph. The graph in figure 9 explains the general correlation between retention and ph. k HA BH + A 0 8 ph Fig. 9: Correlation between retention and ph for basic and acidic compounds In figure 0 the excellent column stability of NUCLEODUR C 8 Gravity in acidic conditions is shown. The retention time of all three compounds in the column performance test remains consistent and virtually unchanged, even after the column is run with 000 ml eluent. Due to the extremely stable surface modification, no cleavage of the Si-O-Si bonding occurs, column deterioration is therefore successfully prevented. B after 000 ml eluent st injection 0 0 min Column: x mm NUCLEODUR C 8 Gravity, µm eluent: acetonitrile % TFA in water (0:0, v/v), ph. flow rate:.0 ml/min, temperature: 0 C, detection: UV, 0 nm, inj.volume: µl. pyridine,. toluene,. ethylbenzene Fig. 8: Surface silanols at different ph values Fig. 0: Stability of NUCLEODUR C 8 Gravity at ph.

5 NUCLEODUR C 8 Gravity Enhanced ph Stability Fig. : Stability of NUCLEODUR C 8 Gravity under alkaline conditions compared with different C 8 phases first injection after 00 injections Phase X 0 min NUCLEODUR C 8 Gravity Phase L 0 min Columns: 0 x. mm Eluent: methanol water ammonia (0:80:0., v/v/v), ph Flow rate:. ml/min Temperature: 0 C Detection: UV, nm Inj. volume:.0 µl. Theophylline. Caffeine 0 min Phase K Phase I 0 min 0 min Fig. demonstrates the stability of NUCLEODUR C 8 Gravity under alkaline conditions in comparison with commercially available modern RP 8 phases. Again, the ultrapure Gravity with its unique high density surface bonding technology withstands strong alkaline mobile phase conditions. Even after 00 injections no loss of column efficiency, identified e.g. by peak broadening or decrease in retention times, could be observed. As it was previously mentioned, ph stability of the stationary phase can be helpful for improving selectivity in method development. Figure shows the separation of basic drugs under acidic and basic conditions.

6 NUCLEODUR C 8 Gravity Enhanced ph Stability ph. The ph stability of silica under alkaline conditions is mainly a kinetic effect and based on the velocity of the dissolution of the silica support. It is worth mentioning, that this phenomenon also depends on type and concentration of buffers, as well as on the temperature. It is well known, that the use of phosphate buffers, particularly at elevated temperatures, can reduce column lifetime even at moderate ph. If possible, phosphate buffers should be replaced by less harmful alternatives. 0 0 min A) ph min ph.0 Column: x mm NUCLEODUR C 8 Gravity, µm Eluent A: acetonitrile Eluent B: 0 mm (NH ) HPO, ph. / 0.0 Gradient: 0% A ( min) 7% A in 0 min Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl. Lidocaine. Papaverine. Noscapine. Diphenhydramine Fig. : Separation of basic alkaloids 0 min B) ph 0.0 At ph. the protonated analytes exhibit poor retention (early elution) and in addition an inadequate resolution for papaverine and noscapine, whilst the formally non ionized molecules can be baseline separated due to the better retention pattern at alkaline ph. A further example how selectivity can be controlled by the ph value is demonstrated in figure. The sample mixture consists of an acid (ketoprofen), a base (lidocaine) and benzamide. Under acidic conditions the protonated lidocaine is eluted very fast due to lack of sufficiently strong hydrophobic interactions between analyte and C 8 chains, in contrary to the formally neutral ketoprofen, which is eluted after about minutes. However at ph 0 a reversal of the elution order, with a visibly longer retention time for the basic lidocaine, can be achieved. Column: x mm NUCLEODUR C 8 Gravity, µm Eluents: A) acetonitrile 0 mm ammonium formate, ph.0 (0:0, v/v) B) acetonitrile 0 mm ammonium bicarbonate, ph 0.0 (0:0, v/v) Flow rate:.0 ml/min Temperature: 0 C Detection: UV, 0 nm Inj. volume: µl. Lidocaine. Benzamide. Ketoprofen H C 0 min CH NH N(C H ) O O NH H C Fig. : Influence of the ph value on selectivity O O OH 7

7 NUCLEODUR C 8 Pyramid RP-HPLC with Highly Aqueous Mobile Phases stable in 00% aqueous mobile phase systems interesting polar selectivity features excellent base deactivation The efforts to neutralize unwanted activity of unreacted surface silanols often results in well basedeactivated phases with high carbon load, but a limited scope of selectivity beyond non-polar interactions. In particular polar compounds like carboxylic acids, drug metabolites, etc. show only weak retention on densely bonded reversed phase columns due to distinct hydrophobic properties but low polar selectivity. Very polar analytes require highly aqueous mobile phases for solubility and retention. Conventional reversed phase columns often display stability problems in eluent systems with high percentage of water (> 9%) as evidenced by a sudden decrease of retention time and overall poor reproducibility. This phenomenon is described as phase collapse caused by the mobile phase expelled from the pores due to the fact, that hydrophobic RP phases are incompletely wetted with the mobile phase ). Different approaches can be used to increase column stability with highly aqueous mobile phase systems. The most promising concepts are incorporating a polar group in the hydrophobic alkyl chain, or using hydrophilic endcapping procedures to improve the wettability of the reversed phase modification. NUCLEOSIL NAUTILUS may be taken as an example for the embedded polar group strategy, in which a C 8 silane with a polar function is successfully linked to the silica surface ). Stability features NUCLEODUR C 8 Pyramid is a silica phase with hydrophilic endcapping, designed especially for use in eluent systems of up to 00% water. In figure we studied the retention behaviour of tartaric, acetic and maleic acid under purely aqueous conditions on NUCLEODUR C 8 Pyramid in comparison with a conventionally bonded RP phase. It can be shown that the retention times for NUCLEODUR C 8 Pyramid remain nearly unchanged between initial injection and restart after the flow has been stopped for hours (see figure ), whilst the performance of the conventional RP column collapsed totally after the same period. ) U. D. Neue et al., Chromatographia (00) 9 77 ) D. Rieger, H. Riering, Int. Laboratory Aug. 000, Vol. 0 (A), ) D. Rieger, J. Pfeiffer, LaborPraxis () (00) 0 8

8 NUCLEODUR C 8 Pyramid RP-HPLC with Highly Aqueous Mobile Phases Retention characteristics Based on the ultrapure NUCLEODUR silica ) the polar surface derivatization exhibits retention characteristics, which differentiate the Pyramid from conventional C 8 stationary phases. Figure shows the improved retention behavior of very polar compounds such as short chain organic acids, which are insufficiently retained on RP columns with predominantly hydrophobic surface properties. Figure shows the separation of various organic acids at acidic ph under 00% aqueous eluent conditions. Column: NUCLEODUR C 8 Pyramid, µm, x mm Eluent: 0.% H PO Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm (injection volume µl). Formic acid. Acetic acid 0 min Fig. : Separation of very polar compounds 0 0 min Column: NUCLEODUR C 8 Pyramid, µm, 0 x mm Eluent: 0.% H PO Flow rate: 0.7 ml/min Temperature: C Detection: UV, 0 nm Fig. : Separation of organic acids (injection volume µl). Tartaric acid. Malic acid. Lactic acid. Succinic acid NUCLEODUR C 8 Pyramid conventional RP column initial injection 0 min 0 min pump stopped! restart after h 0 min 0 min Both columns: x mm Inj. volume: µl Eluent: 0 mm KH PO ph. Flow rate: 0.7 ml/min Temperature: C Detection: UV, 0 nm. Tartaric acid. Acetic acid. Maleic acid Fig. : Stability test comparison 9

9 NUCLEODUR C 8 Pyramid RP-HPLC with Highly Aqueous Mobile Phases In addition to the exceptional polar selectivity NUCLEODUR C 8 Pyramid also provides adequate hydrophobic retention, which can be illustrated in the selectivity test according to Engelhardt ) (see figure 7). The capacity factors of the non-polar, alkyl-substituted benzenes toluene and ethylbenzene do not go too far in comparison with standard C 8 phases. Base deactivation The perceptible increase in polarity has no impact on the retention behavior of ionizable analytes. Even with the strongly basic compounds of the tricyclic antidepressant drug test mixture, no unwanted interactions or a so-called lack in base deactivation are observed (see figure 8).. Uracil. Aniline. Phenol. Dimethylaniline. p-ethylaniline. Toluene 7. Ethylbenzene. Protriptyline. Nortriptyline. Doxepin. Imipramine. Amitriptyline min Column: 0 x mm NUCLEODUR C 8 Pyramid, µm Eluent: methanol water (:, v/v) Flow rate:.0 ml/min Temperature: 0 C Detection: UV, nm Inj. volume: µl Fig. 7: Selectivity test 0 0 min Column: x mm NUCLEODUR C 8 Pyramid, µm Eluent: MeOH 0 mm NH H PO ph.9 (70:0, v/v) Flow rate:.0 ml/min Temperature: 0 C Detection: UV, nm Inj. volume: µl Fig. 8: Tricyclic antidepressants NUCLEODUR C 8 Pyramid NUCLEODUR C 8 Gravity NUCLEODUR C 8 Gravity t R hydrophobic compounds t R hydrophobic compounds t R polar compounds t R polar compounds min min 0 0 min Columns: 0 x mm, µm particles Eluent: methanol mm NH H PO, ph 7 (:, v/v) Flow rate: 0.8 ml/min Temperature: 0 C Detection: UV, nm Inj. volume: µl. Chlorpheniramine. Dimethyl phthalate. Benzamide. Ethyl benzoate. Benzophenone. Lidocaine 7. Naphthalene 8. Biphenyl 9. Acenaphthene Fig. 9: Retention behavior of polar and non-polar compounds on different NUCLEODUR RP columns 0

10 NUCLEODUR C 8 Phases NUCLEODUR C 8 ec and NUCLEODUR C 8 Gravity In addition to the program of NUCLEODUR C 8 phases MACHEREY-NAGEL offers the corresponding octyl modified NUCLEODUR C 8 ec and NUCLEODUR C 8 Gravity columns to expand the reversed phase tool box effectively. Based on the same totally spherical and highly pure silica the C 8 phases exhibit the same excellent chemical and mechanical stability features as the C 8 counterparts. Indeed NUCLEODUR C 8 Gravity can also be run at ph extremes (ph ) by choosing appropriate elution parameters. Due to the shorter chain and less hydrophobic properties of the stationary phase the retention of non-polar compounds is decreased, and in consequence a reduction in time of analysis can be achieved. Moreover a stronger polar selectivity, particularly with the separation of ionizable analytes is frequently observed (as distinct from the C 8 phases). NUCLEODUR C 8 ec and NUCLEODUR C 8 Gravity are most suitable for the development of new methods but also for robust routine analysis. C 8 or C 8 the best of both worlds Chromatographers now might wonder about the differences between C 8 and C 8 phases and the preferred range of application.. Piroxicam. Suprofen. Ketoprofen. Carprofen. Fenoprofen. Diclofenac C 8 C min 0 Column: 0 x mm NUCLEODUR 00- C 8 ec / C 8 ec Eluent: acetonitrile water, % acetic acid (8 :, v/v) Flow rate:.0 ml/min Detection: UV, 0 nm Temperature: C Inj. volume: 0 µl Fig. 0: Anti-inflammatory drugs + + NUCLEODUR 00- C 8 ec NUCLEODUR 00- C 8 ec Columns: 0 x mm Flow rate:.0 ml/min Temperature: C Detection: UV, 7 nm Inj. volume: 0 µl Fig. : Phenols. Resorcinol. Pyrocatechol. Phenol. -Methoxyphenol. -Methoxyphenol. -Ethoxyphenol 7. Veratrol 8. Biphenyl--ol 9. Phenetole min Eluents: A) water, B) methanol Gradient for C 8 : min 0% B, then to 0% B in min Gradient for C 8 : min % B, then to % B in min Indeed there are no general guidelines which could make the choice easier but it will always be beneficial to add both phases to the existing pool of reversed phase columns in the laboratory. The two comparative studies reveal some different selectivity patterns of NUCLEODUR C 8 ec and NUCLEODUR C 8 ec. In figure baseline separation for -ethoxyphenol and dimethoxybenzene (veratrol) and in addition a reversal of the elution order of phenol and -methoxyphenol can be shown on the octyl phase. The separation of various nonsteroidal anti-inflammatory drugs (figure 0) illustrates the differences in polarity between C 8 and C 8 and the resulting impact on efficiency. NUCLEODUR C 8 ec exhibits enhanced selectivity and excellent resolution for the polar compounds piroxicam and suprofen which co-elute on the C 8 column. However due to the longer alkyl chain NUCLEODUR C 8 ec shows a distinct hydrophobic selectivity that leads to baseline separation of the more non-polar analytes carprofen and fenoprofen with superior peak shapes

11 NUCLEODUR CN Cyano-modified High-purity Silica Widen your scope in selectivity! multi-mode column (RP and NP) different retention characteristics in comparison to C 8 / C 8 stable against hydrolysis at low ph high reproducibility from lot to lot In reversed phase HPLC it is fairly common to start with C 8 or C 8 columns, if new methods have to be developed. However, superior polarity and selectivity properties often required for more sophisticated separations, are not always sufficiently provided by classical RP phases, which are usually characterized by a hydrophobic layer of monomeric or polymeric bonded alkylsilanes. One approach to improve the resolution of compounds poorly separated on nonpolar stationary phases, is to change bonded-phase functionality. The fully endcapped and highly reproducible (figure ) NUCLEODUR 00- CN-RP phase has cyanopropyl groups on the surface able to generate a clearly recognizable different retention behavior compared to purely alkyl-functionalized surface modifications (figure ).. Benzamide. Dimethyl phthalate. Phenetole. o-xylene. Biphenyl. Maleic acid. Norephedrine. Ephedrine. Acetaminophen. Chlorpheniramine. Brompheniramine 0 8 min Columns: 0 x mm NUCLEODUR 00- CN-RP 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile 00 mm sodium citrate ph. (:8, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 70 nm Inj. volume: 0 µl Fig. : Comparison of NUCLEODUR C 8 ec and CN-RP for a separation of cold-medicine ingredients lot D lot C lot B lot A 0 min Column: 0 x mm NUCLEODUR 00- CN-RP Eluent: acetonitrile water (0:0, v/v) Flow rate:.0 ml/min Temperature: 0 C Detection: UV, nm Inj. volume: µl 8 Fig. : Reproducibility of NUCLEODUR CN

12 NUCLEODUR CN Cyano-modified High-purity Silica The polarity of the NUCLEODUR 00- CN-RP phase can be classified as intermediate based on multiple retention mechanisms such as dipole-dipole, π-π, and also hydrophobic interactions ). Therefore, this phase shows a distinct selectivity for polar organic compounds as well as for molecules containing π-electron systems (e.g. analytes with double bonds, tricyclic antidepressants) ). Short-chain bonded phases are sometimes suspected of revealing shortcomings in stability towards hydrolysis at low ph ). The chromatogram in figure shows that even after 00 sample injections and four weeks storage at ph (curve ), neither a considerable shift in retention, nor a visible change in peak symmetry could be noticed (curve = new column). Due to the exceptional polarity features the cyano phase can also be run in the normal phase mode. NUCLEODUR CN columns for normal phase applications are shipped in n-heptane. The drastic change in selectivity and order of elution for a mixture of various steroids in normal and reversed phase mode is displayed in figure below. Moreover the high coverage combined with a thorough endcapping makes NUCLEODUR 00- CN-RP suitable for the separation of ionizable compounds such as basic drugs.. Benzamide. Dimethyl phthalate. Phenetole. o-xylene. Biphenyl 0 min Column: x mm NUCLEODUR 00- CN-RP Eluent: acetonitrile water, % TFA ph (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl Fig. : Stability of NUCLEODUR CN-RP at ph References ) C. S. Young and R. J. Weigand, LCGC 0 (), 7 (00) ) V. R. Meyer, Practical High Performance Liquid Chromatography (John Wiley & Sons, New York, rd. ed., 999) ) J. J. Kirkland, LCGC (), 8 00 (99) Peaks :. Methyltestosterone. Testosterone. Norgestrel. Medrysone. Cortisone. Hydrocortisone 7. Prednisolone min Reversed phase mode Column: 0 x mm NUCLEODUR 00- CN-RP Eluent: acetonitrile water (:7, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj.volume: 0 µl min Normal phase mode Column: 0 x mm NUCLEODUR 00- CN Eluent: n-heptane -propanol (90:0, v/v) other conditions as for reversed phase mode Fig. : Separation of steroids in normal phase and reversed phase mode

13 Applications Appl. : Analgesics Appl. : Analgesics. Paracetamol. Acetylsalicylic acid. Salicylic acid. Ketoprofen. Diclofenac. Ibuprofen. Paracetamol. Acetylsalicylic acid. -Hydroxymethyl benzoate. Ketoprofen. Flurbiprofen. Ibuprofen 0 0 min 0 8 min Column: 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile 0 mm KH PO, ph. (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: µl MN Appl. No Column: 0 x mm NUCLEODUR C 8 Pyramid, µm Eluent: acetonitrile 0.% TFA (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No. 90 Appl. : Rapid separation of analgesics. Acetylsalicylic acid (about 0. µg). Salicylic acid (about 0. µg) A Appl. : Analgesics. Paracetamol. Caffeine. -Acetamidophen. Acetanilide. Acetylsalicylic acid. Phenactin min Column: 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile 0 mm KH PO, ph. (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No B 0 Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: methanol 0.% phosphoric acid (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm A: Thomapyrin tablet; B: standard Thomapyrin is a trademark of Boehringer Ingelheim Pharma KG MN Appl. No. 800 min

14 Applications Appl. : Analgesic and antiinflammatory drugs µg/ml. Acetylsalicylic. acid. Tolmetin. Piroxicam. Suprofen. Naproxen 0.. Diflunisal. 7. Fenoprofen 8. Flurbiprofen 9. Indomethazin 0. Ibuprofen Appl. 7: Antiinflammatory drugs Acetylsalicylic acid. Sulindac. Piroxicam. Suprofen. Tolmetin. Naproxen 7. Diflunisal 8. Flurbiprofen 9. Indomethazin 0. Ibuprofen min Column: 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile % acetic acid (8:, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: 0 µl MN Appl. No min Column: 0 x mm NUCLEODUR C 8 Gravity, µm Eluent: acetonitrile 0 mm KH PO, ph. (:, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: µl MN Appl. No. 780 Appl. : Antiinflammatory drugs Appl. 8: Barbiturates. Acetylsalicylic acid. Sulindac. Tolmetin. Ketoprofen. Flurbiprofen. Diclofenac 7. Ibuprofen 8. Meclofenamic acid. Phenobarbital. Pentobarbital. Hexobarbital. Mephobarbital. Thiamylal min Column: 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile 0 mm KH PO, ph. (:, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: µl MN Appl. No min Column: 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile water (0:0, v/v) Flow rate: 0.7 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No. 780

15 Applications Appl. 9: Antidepressants Nordoxepin. Protriptyline. Maprotiline. Nortriptyline. Norclomipramine. Doxepin 7. Imipramine 8. Amitriptyline 9. Clomipramine 0. Trimipramine Appl. : Tricyclic antidepressants. Protriptyline. Nortriptyline. Doxepin. Imipramine. Amitriptyline. Trimipramine 0 0 min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: A) methanol acetonitrile (0:0, v/v) B) 0 mm KH PO, ph % B in min, then 0 min at % B Flow rate:. ml/min Temperature: 0 C Detection: UV, 0 nm Inj. volume: µl MN Appl. No min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: methanol 0 mm KH PO, ph 7 (:, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm MN Appl. No. 80 Appl. 0: Tricyclic antidepressants. Protriptyline. Nortriptyline. Doxepin. Imipramine. Amitriptyline. Trimipramine Appl. : Tricyclic antidepressants. Doxepin. Nortriptyline. Trimipramine. Clomipramine 0 min 0 0 min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: acetonitrile 0 mm KH PO, ph 7.0 (:, v/v) Flow rate:.0 ml/min Temperature: 0 C Detection: UV, nm Inj. volume: µl MN Appl. No Column: 0 x mm NUCLEODUR 00- CN-RP Eluent: acetonitrile 0 mm KH PO, ph. (:, v/v) Flow rate:.0 ml/min Temperature: 0 C Detection: UV, nm Inj. volume:. µl (c = µg/ml) MN Appl. No. 980

16 Applications Appl. : Cold medicine Appl. : Cold medicine (purchasable OTC drug). Maleic acid. Acetaminophen. Pseudoephedrine. Benzoic acid. Chlorpheniramine. Dextromethorphan. Ascorbic acid. Paracetamol. Caffeine. Chlorpheniramine min 0 min Column: x mm NUCLEODUR C 8 Gravity, µm Eluents: A) 0 mm KH PO + mm pentanesulfate (Na salt), ph.; B) methanol Gradient: % B in min Flow rate:.0 ml/min Temperature: 0 C Detection: UV, 0 nm Inj. volume: µl MN Appl. No. 780 Column: 0 x mm NUCLEODUR C 8 Pyramid, µm Eluent: A) 0 mm NH H PO, ph.; B) acetonitrile 0 0% B in min Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm (. min) UV, nm Inj. volume: µl MN Appl. No. 90 Appl. : Cold medicine ingredients. Ascorbic acid. Paracetamol. Caffeine. Chlorpheniramine. Dextromethorphan. Diphenhydramine Appl. : Basic drugs. Procainamide. Clonidin. Clenbuterol 0 8 min Column: 0 x mm NUCLEODUR C 8 Pyramid, µm Eluent: A) 0 mm NH H PO, ph.; B) acetonitrile Gradient: 0 0% B in min Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm (. min) UV, nm Inj. volume: µl MN Appl. No min Column: x mm NUCLEODUR 00- CN-RP Eluent: acetonitrile 0 mm KH PO, ph. (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume:.0 µl MN Appl. No. 90 7

17 Applications Appl. 7: Antibacterial drugs Appl. 9: Penicillin antibiotics. Ofloxacin. Ciprofloxacin. Cinoxacin. Penicillin G. Penicillin V. Cloxacillin. Amoxicillin. Penicillin G. Penicillin V. Nafcillin. Dicloxacillin 0 8 min Column: 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile water (0:0, v/v) 0.0% TFA Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No min Column: 0 x mm NUCLEODUR C 8 Pyramid, µm Eluent: acetonitrile 0.% TFA (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No. 90 Appl. 8: Penicillin antibiotics Appl. 0: Sulfonamides. Penicillin G. Penicillin V. Cloxacillin. Nafcillin. Dicloxacillin. Sulfanilamide. Sulfadiazine. Sulfathiazole. Sulfamerazine. Sulfadimidine. Succinylsulfathiazole 0 min Column: x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile 0 mm KH PO, ph.0 (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: methanol 0.% TFA (0:80, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: µl MN Appl. No

18 Applications. Bromazepam. Oxazepam. Lorazepam. Temazepam Appl. : Benzodiazepines Appl. : Coronary therapeutic drugs (Ca-antagonists). Nifedipine. Nitrendipine. Nimodipine. Nisoldipine. Nicardipine 0 min Column: x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile 0 mm KH PO, ph. (:, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No min Column: x mm NUCLEODUR 00- CN-RP Eluent: A) acetonitrile, B) 0 mm KH PO, ph. 0 0% B in 7. min, then 7. min 0% B Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume:. µl ( µg/compound) MN Appl. No. 90. Promethazine. Promazine. Chlorpromazine Appl. : Sedative drugs Appl. : Nucleic acid bases. Cytosine. Adenine. Uracil. Thymine 0 0 min Column: x mm NUCLEODUR 00- CN-RP Eluent: A) methanol B) 0 mm ammonium acetate, ph % B in 0 min, then 0 min 0% B Flow rate:. ml/min Temperature: 0 C Detection: UV, nm Inj. volume: µl (70 µg/ml +, µg/ml ) MN Appl. No min Column: 0 x mm NUCLEODUR C 8 Pyramid, µm Eluent: A) 0 mm NH H PO, ph., B) acetonitrile. min 00% A, then to 90% A in 0 min Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No. 90 9

19 Applications Appl. : Determination of quinine in cinchona bark. Quinine. Scopolamine. Brucine. Strychnine. Atropine. Papaverine 7. Noscapine A: real sample B: standard. Codeine. Quinine. Strychnine. Atropine. Papaverine. Noscapine Appl. 7: Alkaloids A B 0 0 min 0 Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: A) 0 mm NH H PO, ph, B) acetonitrile 0 0% B in min Flow rate:.0 ml/min Temperature: 0 C Detection: UV, 0 nm MN Appl. No Chloroquine. Quinine. Mefloquine Appl. : Quinine alkaloids min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: A) acetonitrile, B) 0 mm KH PO, ph % B in min, then 70 90% B in min Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: µl MN Appl. No. 790 Appl. 8: Catecholamines. Norephedrine. Adrenaline. Dihydroxyphenylalanine. Hydroxytyramine. Tyrosine 0 0 min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: A) methanol, B) 0 mm KH PO, ph % B in min, then 70 0% B in 7 min Flow rate:. ml/min Temperature: C Detection: UV, 0 nm Inj. volume: 0 µl MN Appl. No min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: 00 mm NaH PO, ph.0 Flow rate: 0.8 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No

20 Applications Appl. 9: Steroids. Cortisone. Hydrocortisone. Hydrocortisone -acetate. α-methyl-βhydroxyprogesterone. α-methyl-7αhydroxyprogesterone. α-methyl-7αhydroxyprogesterone acetate Peaks (each env. 0 0 µg/ml):.estriol.prednisolone.cortisone.testosterone.α-methyl-β-hydroxyprogesterone.α-methyl-7α-hydroxyprogesterone 7.α-Methyl-7α-hydroxyprogesterone acetate 8.Estradiol 9.Estrone 0.Progesterone Appl. : Steroids min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: acetonitrile water (0:0, v/v) Flow rate:.0 ml/min Temperatur: C Detection: UV, 0 nm MN Appl. No min Column: x mm NUCLEODUR 00- C 8 ec Eluent: A) water, B) methanol min 0% B, 0 % B in 0 min, min % B, 0% B in min, min 0% B Flow rate:.0 ml/min Temperature: 0 C Detection: UV, 0 nm Inj. volume: 0 µl MN Appl. No. 80. Cortisone. Hydrocortisone. Corticosterone. Hydrocortisone acetate. Corticosterone acetate Appl. 0: Corticosteroids Appl. : Xylometazoline in nasal spray b). Xylometazoline.. Benzalkonium chlorides with different chain lengths (C 8, C 0, C, C ) a) standard b) nasal spray 0 0 min a) Column: x mm NUCLEODUR 00- C 8 ec Eluent: methanol water (:, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: µl MN Appl. No min Column: x mm NUCLEODUR 00- CN-RP Eluent: acetonitrile 0 mm Na citrate, ph.0 (0:0, v/v) Flow rate: 0.8 ml/min; temperature: 0 C Detection: UV, nm

21 Applications Appl. : Soft drink additives Appl. : Aromatic aldehydes. Ascorbic acid (acidic). Acesulfam K. Saccharin. Caffeine (basic). Aspartame. Quinine (strongly basic) 7. Vanillin 8. Sorbic acid (acidic) 9. Benzoic acid (acidic). p-carboxybenzaldehyde. p-hydroxybenzaldehyde. Vanillin. -Ethoxyvanillin. Benzaldehyde min 0 8 min Column: 0 x. mm NUCLEODUR 00- C 8 ec Eluent: 0 mm KH PO, ph acetonitrile (:, v/v) Flow rate:.9 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: 0 µl MN Appl. No. 80 Column: x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile water, ph.0 (:78, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No Appl. : Fast separation of sweeteners. Acesulfam K. Saccharin. Aspartame Appl. : Separation of a test mixture. Ethyl p-aminobenzoate. Propranolol. Lidocaine. Imipramine. Amitriptyline. Trimipramine Column: 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile water (0:80, v/v) 0.% TFA Flow rate:. ml/min Temperature: C Detection: UV, nm Inj. volume: 0 µl MN Appl. No min min Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: methanol 0 mm KH PO, ph 7 (70:0, v/v) Flow rate:.0 ml/min Temperature: 0 C Detection: UV, nm MN Appl. No. 80

22 Applications Appl. 7: Fat-soluble vitamins 7 8. Vitamin K. Vitamin A. Vitamin A acetate. Vitamin D. Vitamin D. Vitamin E 7. Vitamin E acetate 8. Vitamin K Appl. 9: Water-soluble vitamins (mg/ml). Nicotinic acid (0.). Nicotinamide (0.). -Aminobenzoic acid (0.0). Folic acid (0.). Pyridoxin (B ) [hydrochloride] (0.0). Riboflavin (B ) (0.0) 7. Thiamine hydrochloride (B ) (0.0) 8. Rutin (0.0) red curves: vitamin test mixture (in eluent A) blue curves: multivitamin juice (undiluted) both detected at three different wave lengths 0 0 min Column: 0 x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile Flow rate:. ml/min Temperature: 0 C Detection: UV, 80 nm Inj. volume: µl MN Appl. No nm Appl. 8: Tocopherols 7 nm. δ-tocopherol. γ-tocopherol. α-tocopherol. α-tocopherol acetate nm min 0 min Column: x mm NUCLEODUR 00- C 8 ec Eluent: methanol (00%) Flow rate:.0 ml/min Temperature: C Detection: UV, 9 nm Inj. volume: 8 µl MN Appl. No. 790 Column: x mm NUCLEODUR C 8 Pyramid, µm Eluent: A) water, mm heptanesulfonic acid (Na salt), mm NaH PO, 0.% CH COOH, 0.00% triethylamine (ph.), B: acetonitrile water (0:0, v/v), mm heptanesulfonic (Na salt), 0. % CH COOH, 0.00% triethylamine (ph ~.); multistep gradient: min 0% B, 0 0% B in. min, 0 % B in. min, 0% B in 8 min, 0 70% B in 7 min, 70 0%B in min Flow rate:.0 ml/min Temperature: C Detection: UV,, 7 and nm Inj. volume: 0 µl

23 Applications Appl. 0: Complexing agents acc. to DIN 8-8. NTA (nitrilotriacetic aicd). EDTA (ethylenediamintetraacetic acid). DTPA (diethylenetrinitrilopentaacetic acid) chromatogram courtesy of H. Albrich, C. Geis, Gewerbliches Institut für Umweltanalytik GmbH, Teningen, Germany. Pyridine. Phenol Appl. : Pyridine / phenol 0 0 min 0 8 min Column: 0 x mm NUCLEODUR C 8 Pyramid, µm Eluent: 0. mmol/l HNO, 7. mmol/l N(C H 9 ) HSO,. mmol/l N(C H 9 ) OH, 7 µmol/l Fe + Flow rate: 0. ml/min Temperature: 0 C Detection: UV, 0 nm Inj. volume: 0 µl Column: 0 x mm NUCLEODUR C 8 Pyramid, µm Eluent: methanol water (0:70, v/v) Flow rate:.0 ml/min Temperature: 0 C Detection: UV, nm Inj. volume: µl MN Appl. No. 90 Appl. : Phenolic compounds. Resorcinol. Pyrocatechol. -Methoxyphenol. Phenol. -Methoxyphenol. -Ethoxyphenol. Aspartic acid. Fumaric acid. Maleic acid Appl. : Organic acids 0 min min Column: x mm NUCLEODUR 00- C 8 ec Eluent: methanol water, 0.% H PO (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm Inj. volume: µl MN Appl. No Column: 0 x mm NUCLEODUR 00- CN-RP Eluent: mm KH PO, ph.0 Flow rate: 0. ml/min Temperature: 0 C Detection: UV, 0 nm Inj. volume: µl MN Appl. No. 990

24 Applications. Acetophenone. Propiophenone. Butyrophenone. Benzophenone. Valerophenone Appl. : Ketones. Desisopropylatrazine. Metamitron. Desethylatrazine. Bromoxynil. Simazine. Cyanazine 7. Metabenzthiazuron 8. Atrazine 9. Monolinuron Appl. : Pesticides 0.Isoproturon.Diuron.Metobromuron.Metazachlor.Sebutylazine.Terbuthylazine.Linuron 7.Chloroxuron 8.Metolachlor 0 min Column: x mm NUCLEODUR 00- C 8 ec Eluent: acetonitrile water (0:0, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, 0 nm Inj. volume: µl MN Appl. No min Appl. : Test for metal ions in silica adsorbent.,7-dihydroxynaphthalene.,-dihydroxynaphthalene Column: Eluent: Gradient: Flow rate Temperature: C Detection UV 0 nm 0 x mm NUCLEODUR 00- C 8 ec A) water (% acetic acid), B) acetonitrile 0 % B in 0 min, 0% B in 0 min, min at 0% B, 0 0 % B in 0 min 0 0% B in 0 min, 0 min at 0% B.0 ml/min MN Appl. No min The ratio of the asymmetry factors of,-dihydroxynaphthalene () and,7-dihydroxynaphthalene () is a measure for the metal ion content of the silica phase, because () can form complexes with metal ions, resulting in broad peaks for this compound. Column: x mm NUCLEODUR C 8 Gravity, µm Eluent: methanol 0 mm KH PO, ph 7 (:, v/v) Flow rate:.0 ml/min Temperature: C Detection: UV, nm MN Appl. No. 80

25 Alphabetical index of analytes Analyte NUCLEODUR phase page Analyte NUCLEODUR phase page A Acenaphthene C 8 Gravity, µm Fig., 7 C 8 Pyramid, µm Fig. 9 0 Acesulfam K 00- C 8 ec Appl. 00- C 8 ec Appl. -Acetamidophen C 8 Gravity, µm Appl. -Acetamidophen see Paracetamol Acetaminophen 00- CN-RP Fig. C 8 Gravity, µm Appl. 7 Acetanilide C 8 Gravity, µm Appl. Acetic acid C 8 Pyramid, µm Fig., 9 Acetophenone 00- C 8 ec Appl. Acetylsalicylic acid 00- C 8 ec Appl., Appl. 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 C 8 Pyramid, µm Appl. C 8 Gravity, µm Appl. Adenine C 8 Pyramid, µm Appl. 9 Adrenaline C 8 Gravity, µm Appl Aminobenzoic acid C 8 Pyramid, µm Appl. 9 Amitriptyline C 8 Gravity, µm Fig., 7 Appl. 9, 0 C 8 Pyramid, µm Fig. 8 0 C 8 Gravity, µm Appl. Appl. Amoxicillin C 8 Pyramid, µm Appl. 9 8 Aniline C 8 Pyramid, µm Fig. 7 0 Anthracene 00- C 8 ec Fig. Ascorbic acid 00- C 8 ec Appl. C 8 Pyramid, µm Appl., 7 Aspartame 00- C 8 ec Appl. 00- C 8 ec Appl. Aspartic acid 00- CN-RP Appl. Atrazine 00- C 8 ec Appl. Atropine C 8 Gravity, µm Appl. 7 0 C 8 Gravity, µm Appl. 0 B Benzaldehyde 00- C 8 ec Appl. Benzalkonium chlorides 00- CN-RP Appl. Benzamide 00- CN-RP Fig. Fig. C 8 Gravity, µm Fig. 7 C 8 Pyramid, µm Fig. 9 0 Benzoic acid 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 Benzophenone 00- C 8 ec Appl. C 8 Pyramid, µm Fig. 9 0 Biphenyl 00- CN-RP Fig. Fig. C 8 Pyramid, µm Fig. 9 0 Biphenyl--ol 00- C 8 ec Fig. Bromazepam 00- C 8 ec Appl. 9 Bromoxynil 00- C 8 ec Appl. Brompheniramine 00- CN-RP Fig. Brucine C 8 Gravity, µm Appl. 0 Butyrophenone 00- C 8 ec Appl. C Caffeine 00- C 8 ec Appl. C 8 Gravity, µm Fig. C 8 Pyramid, µm Appl., 7 C 8 Gravity, µm Appl. p-carboxybenzaldehyde 00- C 8 ec Appl. Carprofen 00- C 8 ec Fig. 0 Chloroquine C 8 Gravity, µm Appl. 0 Chloroxuron 00- C 8 ec Appl. Chlorpheniramine 00- CN-RP Fig. C 8 Gravity, µm Appl. 7 C 8 Pyramid, µm Fig. 9 0 Appl., 7 Chlorpromazine 00- CN-RP Appl. 9 Cinoxacin 00- C 8 ec Appl. 7 8 Ciprofloxacin 00- C 8 ec Appl. 7 8 Clenbuterol 00- CN-RP Appl. 7 Clomipramine 00- CN-RP Appl. C 8 Gravity, µm Appl. 9 Clonidin 00- CN-RP Appl. 7 Cloxacillin 00- C 8 ec Appl. 7, 8 8 Codeine C 8 Gravity, µm Appl. 7 0 Corticosterone acetate 00- C 8 ec Appl. 0 Corticosterone 00- C 8 ec Appl. 0 Cortisone 00- C 8 ec Appl C 8 ec Appl. 00- CN Fig. C 8 Gravity, µm Appl. 9 Cyanazine 00- C 8 ec Appl. Cytosine C 8 Pyramid, µm Appl. 9 D Desethylatrazine 00- C 8 ec Appl. Desisopropylatrazine 00- C 8 ec Appl. Dextromethorphan C 8 Gravity, µm Appl. 7 C 8 Pyramid, µm Appl. 7 Dibutyl phthalate C 8 Gravity, µm Fig., 7 Diclofenac 00- C 8 ec Appl. Appl. 00- C 8 ec Fig. 0 Dicloxacillin 00- C 8 ec Appl. 8 8 C 8 Pyramid, µm Appl. 9 8 Diethylenetrinitrilopentaacetic acid C 8 Pyramid, µm Appl. 0 Diflunisal 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 Dihydroxynaphthalene isomers C 8 Gravity, µm Fig. 7 C 8 Gravity, µm Appl. Dihydroxyphenylalanine C 8 Gravity, µm Appl. 8 0 Dimethyl phthalate 00- CN-RP Fig. Fig. C 8 Pyramid, µm Fig. 9 0 Dimethylaniline C 8 Pyramid, µm Fig. 7 0 Diphenhydramine C 8 Gravity, µm Fig. 7 C 8 Pyramid, µm Appl. 7 Diuron 00- C 8 ec Appl. Doxepin 00- CN-RP Appl. C 8 Gravity, µm Appl. 9, 0 C 8 Pyramid, µm Fig. 8 0 C 8 Gravity, µm Appl. DTPA C 8 Pyramid, µm Appl. 0 E EDTA C 8 Pyramid, µm Appl. 0 Ephedrine 00- CN-RP Fig. Estradiol 00- C 8 ec Appl. Estriol 00- C 8 ec Appl. Estrone 00- C 8 ec Appl.

26 Alphabetical index of analytes Analyte NUCLEODUR phase page Analyte NUCLEODUR phase page -Ethoxyphenol 00- C 8 ec Appl. 00- C 8 ec Fig. -Ethoxyvanillin 00- C 8 ec Appl. Ethyl benzoate C 8 Pyramid, µm Fig. 9 0 Ethyl p-aminobenzoate C 8 Gravity, µm Appl. p-ethylaniline C 8 Pyramid, µm Fig. 7 0 Ethylbenzene C 8 Gravity, µm Fig. 7 Fig. 0 C 8 Pyramid, µm Fig. 7 0 Ethylenediaminetetraacetic acid C 8 Pyramid, µm Appl. 0 F Fenoprofen 00- C 8 ec Fig. 0 Appl. Flurbiprofen 00- C 8 ec Appl. 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 C 8 Pyramid, µm Appl. Folic acid C 8 Pyramid, µm Appl. 9 Formic acid C 8 Pyramid, µm Fig. 9 Fumaric acid 00- CN-RP Appl. H Hexobarbital 00- C 8 ec Appl. 8 Hydrocortisone 00- C 8 ec Appl CN Fig. C 8 Gravity, µm Appl. 9 Hydrocortisone acetate 00- C 8 ec Appl. 0 C 8 Gravity, µm Appl. 9 -Hydroxybenzaldehyde 00- C 8 ec Appl. -Hydroxymethyl benzoate C 8 Pyramid, µm Appl. Hydroxytyramine C 8 Gravity, µm Appl. 8 0 I Ibuprofen 00- C 8 ec Appl. Appl. 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 C 8 Pyramid, µm Appl. Imipramine C 8 Gravity, µm Appl. 9, 0 C 8 Pyramid, µm Fig. 8 0 C 8 Gravity, µm Appl. Appl. Indomethazin 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 Isoproturon 00- C 8 ec Appl. K Ketoprofen 00- C 8 ec Appl. Appl. 00- C 8 ec Fig. 0 C 8 Gravity, µm Fig. 7 C 8 Pyramid, µm Appl. L Lactic acid C 8 Pyramid, µm Fig. 9 Lidocaine C 8 Gravity, µm Fig. 7 Fig., 7 C 8 Pyramid, µm Fig. 9 0 C 8 Gravity, µm Appl. Linuron 00- C 8 ec Appl. Lorazepam 00- C 8 ec Appl. 9 M Maleic acid 00- CN-RP Fig. Appl. C 8 Gravity, µm Appl. 7 C 8 Pyramid, µm Fig. 9 Malic acid C 8 Pyramid, µm Fig. 9 Maprotiline C 8 Gravity, µm Appl. 9 Meclofenamic acid 00- C 8 ec Appl. Medrysone 00- CN Fig. Mefloquine C 8 Gravity, µm Appl. 0 Mephobarbital 00- C 8 ec Appl. 8 Metabenzthiazuron 00- C 8 ec Appl. Metamitron 00- C 8 ec Appl. Metazachlor 00- C 8 ec Appl. Methoxyphenol isomers 00- C 8 ec Appl. 00- C 8 ec Fig. α-methyl-β-hydroxyprogesterone 00- C 8 ec Appl. C 8 Gravity, µm Appl. 9 α-methyl-7α-hydroxyprogesterone 00- C 8 ec Appl. C 8 Gravity, µm Appl. 9 α-methyl-7α-hydroxyprogesterone acetate 00- C 8 ec Appl. C 8 Gravity, µm Appl. 9 Methyltestosterone 00- CN Fig. Metobromuron 00- C 8 ec Appl. Metolachlor 00- C 8 ec Appl. Monolinuron 00- C 8 ec Appl. N Nafcillin 00- C 8 ec Appl. 8 8 C 8 Pyramid, µm Appl. 9 8 Naphthalene 00- C 8 ec Fig. C 8 Gravity, µm Fig. 7 C 8 Pyramid, µm Fig. 9 0 Naproxen 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 Nicardipine 00- CN-RP Appl. 9 Nicotinamide C 8 Pyramid, µm Appl. 9 Nicotinic acid C 8 Pyramid, µm Appl. 9 Nifedipine 00- CN-RP Appl. 9 Nimodipine 00- CN-RP Appl. 9 Nisoldipine 00- CN-RP Appl. 9 Nitrendipine 00- CN-RP Appl. 9 Nitrilotriacetic acid C 8 Pyramid, µm Appl. 0 Norclomipramine C 8 Gravity, µm Appl. 9 Nordoxepin C 8 Gravity, µm Appl. 9 Norephedrine 00- CN-RP Fig. C 8 Gravity, µm Appl. 8 0 Norgestrel 00- CN Fig. Nortriptyline 00- CN-RP Appl. C 8 Gravity, µm Appl. 9, 0 C 8 Pyramid, µm Fig. 8 0 C 8 Gravity, µm Appl. Noscapine C 8 Gravity, µm Fig. 7 Appl. 7 0 C 8 Gravity, µm Appl. 0 NTA C 8 Pyramid, µm Appl. 0 O Ofloxacin 00- C 8 ec Appl. 7 8 Oxazepam 00- C 8 ec Appl. 9 7

27 Alphabetical index of analytes Analyte NUCLEODUR phase page Analyte NUCLEODUR phase page P Papaverine C 8 Gravity, µm Fig. 7 Appl. 7 0 C 8 Gravity, µm Appl. 0 Paracetamol 00- C 8 ec Appl. C 8 Pyramid, µm Appl. Appl., 7 C 8 Gravity, µm Appl. Penicillin G 00- C 8 ec Appl. 7, 8 8 C 8 Pyramid, µm Appl. 9 8 Penicillin V 00- C 8 ec Appl. 7, 8 8 C 8 Pyramid, µm Appl. 9 8 Pentobarbital 00- C 8 ec Appl. 8 Phenactin C 8 Gravity, µm Appl. Phenetole 00- C 8 ec Fig. 00- CN-RP Fig. Fig. Phenobarbital 00- C 8 ec Appl. 8 Phenol 00- C 8 ec Fig. Appl. 00- C 8 ec Fig. C 8 Gravity, µm Fig. C 8 Pyramid, µm Fig. 7 0 Appl. Piroxicam 00- C 8 ec Fig. 0 Appl. C 8 Gravity, µm Appl. 7 Prednisolone 00- C 8 ec Appl. 00- CN Fig. Procainamide 00- CN-RP Appl. 7 Progesterone 00- C 8 ec Appl. Promazine 00- CN-RP Appl. 9 Promethazine 00- CN-RP Appl. 9 Propiophenone 00- C 8 ec Appl. Propranolol C 8 Gravity, µm Appl. Protriptyline C 8 Gravity, µm Appl. 9, 0 C 8 Pyramid, µm Fig. 8 0 C 8 Gravity, µm Appl. Pseudoephedrine C 8 Gravity, µm Appl. 7 Pyridine C 8 Gravity, µm Fig. Fig. 0 C 8 Pyramid, µm Appl. Pyridoxin C 8 Pyramid, µm Appl. 9 Pyrocatechol 00- C 8 ec Appl. 00- C 8 ec Fig. Q Quinine 00- C 8 ec Appl. C 8 Gravity, µm Appl., 7 0 C 8 Gravity, µm Appl. 0 R Resorcinol 00- C 8 ec Appl. 00- C 8 ec Fig. Riboflavin C 8 Pyramid, µm Appl. 9 Rutin C 8 Pyramid, µm Appl. 9 S Saccharin 00- C 8 ec Appl. 00- C 8 ec Appl. Salicylic acid 00- C 8 ec Appl., Scopolamine C 8 Gravity, µm Appl. 0 Sebutylazine 00- C 8 ec Appl. Simazine 00- C 8 ec Appl. Sorbic acid 00- C 8 ec Appl. Strychnine C 8 Gravity, µm Appl. 7 0 C 8 Gravity, µm Appl. 0 Succinic acid C 8 Pyramid, µm Fig. 9 Succinylsulfathiazole C 8 Gravity, µm Appl. 0 8 Sulfadiazine C 8 Gravity, µm Appl. 0 8 Sulfadimidine C 8 Gravity, µm Appl. 0 8 Sulfamerazine C 8 Gravity, µm Appl. 0 8 Sulfanilamide C 8 Gravity, µm Appl. 0 8 Sulfathiazole C 8 Gravity, µm Appl. 0 8 Sulindac 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 Suprofen 00- C 8 ec Fig. 0 Appl. C 8 Gravity, µm Appl. 7 T Tartaric acid C 8 Pyramid, µm Fig., 9 Temazepam 00- C 8 ec Appl. 9 Terbuthylazine 00- C 8 ec Appl. Testosterone 00- C 8 ec Appl. 00- CN Fig. Theophylline C 8 Gravity, µm Fig. Thiamine C 8 Pyramid, µm Appl. 9 Thiamylal 00- C 8 ec Appl. 8 Thymine C 8 Pyramid, µm Appl. 9 Tocopherols 00- C 8 ec Appl. 8 Tolmetin 00- C 8 ec Appl. 00- C 8 ec Appl. C 8 Gravity, µm Appl. 7 Toluene C 8 Gravity, µm Fig. 7 Fig. 0 C 8 Pyramid, µm Fig. 7 0 Trimipramine 00- CN-RP Appl. C 8 Gravity, µm Appl. 9, 0 C 8 Gravity, µm Appl. Appl. Tyrosine C 8 Gravity, µm Appl. 8 0 U Uracil C 8 Gravity, µm Fig. 7 C 8 Pyramid, µm Fig. 7 0 Appl. 9 V Valerophenone 00- C 8 ec Appl. Vanillin 00- C 8 ec Appl. 00- C 8 ec Appl. Veratrol 00- C 8 ec Fig. Vitamins fat-soluble 00- C 8 ec Appl. 7 water-soluble C 8 Pyramid, µm Appl. 9 X o-xylene 00- CN-RP Fig. Fig. Xylometazoline 00- CN-RP Appl. 8

28 Ordering information Analytical columns with NUCLEODUR C 8 Gravity Length 0 mm ) 0 mm 70 mm 00 mm mm 0 mm 0 mm NUCLEODUR C 8 Gravity, µm Particle size µm, pore size 0 Å; octadecyl phase, endcapped, 8% C; eluent in column acetonitrile / water Guard columns ChromCart columns mm ID mm ID mm ID mm ID Microbore columns mm ID EC columns ) mm ID mm ID mm ID mm ID NUCLEODUR C 8 Gravity, µm Particle size µm, pore size 0 Å; octadecyl phase, endcapped, 8 % C; eluent in column acetonitrile / water ChromCart columns mm ID mm ID mm ID mm ID Microbore columns mm ID EC columns ) mm ID mm ID mm ID mm ID Analytical columns with NUCLEODUR C 8 Pyramid NUCLEODUR C 8 Pyramid, µm Particle size µm, pore size 0 Å; octadecyl phase with hydrophilic endcapping, % C; eluent in column acetonitrile / water ChromCart columns mm ID mm ID mm ID mm ID Microbore columns mm ID EC columns ) mm ID mm ID mm ID mm ID mm ChromCart columns and CC guard column cartridges (8 mm) in packs of, all other columns in packs of. ) 0 mm ChromCart columns require CC column holder 0 mm (Cat. No. 78). ) On request, Microbore columns are also available in lengths of 0, 0, 00 and 00 mm and with 0., 0., 0., 0., 0.7 and. mm ID. Guard columns for Microbore columns on request. ) As guard columns for EC columns use ChromCart guard column cartridges with guard column adaptor EC (Cat. No. 79). Preparative columns with NUCLEODUR phases are available on request! 9

29 Ordering information Analytical columns with NUCLEODUR C 8 ec Length 0 mm ) 0 mm 70 mm 00 mm mm 0 mm 0 mm NUCLEODUR 00- C 8 ec Particle size µm, pore size 0 Å; octadecyl phase, endcapped, 7.% C; eluent in column acetonitrile / water Guard columns ChromCart columns mm ID mm ID mm ID mm ID Microbore columns mm ID EC columns ) mm ID mm ID mm ID mm ID NUCLEODUR 00- C 8 ec Particle size µm, pore size 0 Å; octadecyl phase, endcapped, 7.% C; eluent in column acetonitrile / water ChromCart columns mm ID mm ID mm ID mm ID Microbore columns mm ID EC columns ) mm ID mm ID mm ID mm ID Analytical columns with NUCLEODUR C 8 Gravity NUCLEODUR C 8 Gravity, µm Particle size µm, pore size 0 Å; octyl phase, endcapped, % C; eluent in column acetonitrile / water ChromCart columns mm ID mm ID mm ID mm ID EC columns ) mm ID mm ID mm ID mm ID mm ChromCart columns and CC guard column cartridges (8 mm) in packs of, all other columns in packs of. ) 0 mm ChromCart columns require CC column holder 0 mm (Cat. No. 78). ) On request, Microbore columns are also available in lengths of 0, 0, 00 and 00 mm and with 0., 0., 0., 0., 0.7 and. mm ID. Guard columns for Microbore columns on request. ) As guard columns for EC columns use ChromCart guard column cartridges with guard column adaptor EC (Cat. No. 79). Preparative columns with NUCLEODUR phases are available on request! 0

Columns for HPLC. Columns for HPLC

Columns for HPLC. Columns for HPLC Analytical columns packed with NUCLEDUR NUCLEDUR reversed phase packings In reversed phase liquid chromatography the efficiency of the packing is strongly affected by the quality of the base silica itself.

More information

High performance HPLC packings and Applications

High performance HPLC packings and Applications High performance HPLC packings and Applications MACHEREY-NAGEL MN NUCLEODUR Reversed Phase Packings In RP liquid chromatography the efficiency of the packing is strongly affected by the quality of the

More information

Analytical and Preparative SFC Columns

Analytical and Preparative SFC Columns Analytical and Preparative SFC Columns Best Performance for Supercritical Fluid Chromatography Sepax SFC-Cyano... Sepax SFC-Amino... Sepax SFC-Pyridine... Sepax SFC-SCX... 5 Sepax SFC-Diol... 6 Sepax SFC-Silica...

More information

Sepax Technologies, Inc.

Sepax Technologies, Inc. Sepax Technologies, Inc. Sepax Technologies, Inc. develops and manufactures products in the area of chemical and biological separations, biosurfaces and proteomics. Sepax product portfolio includes ) liquid

More information

ACE C18-AR Use the Power!

ACE C18-AR Use the Power! combines the retention and separation characteristics of a C18 phase with the extra selectivity of an integral phenyl functional group. The combination provides extra resolving power for a wide variety

More information

Eurospher II the logical choice. Physical properties of Eurospher II silica gel: Silica gel: ultra pure, > % Metal content: < 10 ppm

Eurospher II the logical choice. Physical properties of Eurospher II silica gel: Silica gel: ultra pure, > % Metal content: < 10 ppm HPLC SMB smometry Euroline Eurospher II Eurospher II the logical choice After more than years on the market, our Eurospher stationary phase has established a reputation for being a first-class packing

More information

A New Dimension in Preparative HPLC

A New Dimension in Preparative HPLC New Dimension in Preparative HPL... we Meet your Needs NULEODUR HTec 6 - key features: reliable and durable standard RP phase for up-scaling to preparative scale, suited for L/MS high loadability and excellent

More information

Thermo Scientific Hypersil BDS Columns

Thermo Scientific Hypersil BDS Columns Technical Guide Version 2 Thermo Scientific Hypersil BDS Columns Robust and rugged, delivering excellent reproducibility and peak symmetry Part of Thermo Fisher Scientific Thermo Scientific Hypersil BDS

More information

Columns for HPLC. Columns for HPLC

Columns for HPLC. Columns for HPLC In this chapter we describe analytical HPLC columns with our NUCLEOSIL silica phases. Silica as well as polymerbased phases for special separation problems are described in the chapter Columns for special

More information

Ultra Columns HPLC COLUMNS

Ultra Columns HPLC COLUMNS Acetaminophen, Narcotic Analgesics.............519 Aldehydes, Ketones...........................500 Beclomethasone.............................523 Corticosteroids..............................529 Explosives..................................501

More information

CHROMABOND HLB. Introduction. Advantages of CHROMABOND HLB. Technical data

CHROMABOND HLB. Introduction. Advantages of CHROMABOND HLB. Technical data MACHEREY-NAGEL Chromatography nhydrophilic-lipophilic balanced phase nenhanced retention for polar compounds nconsistent recoveries Introduction The enrichment of hydrophilic analytes from polar matrices

More information

ACE. For increased polar retention and alternative selectivity. Alternative selectivity for method development

ACE. For increased polar retention and alternative selectivity. Alternative selectivity for method development ACE C8-Amide For increased polar retention and alternative selectivity Alternative selectivity for method development Improved separations with polar, acidic, basic and phenolic compounds High efficiency

More information

InertSustain Phenylhexyl. A New Second Choice Column to Change Chromatographic Behavior

InertSustain Phenylhexyl. A New Second Choice Column to Change Chromatographic Behavior InertSustain Phenylhexyl A ew Second Choice Column to Change Chromatographic Behavior Providing Alternative Selectivity to C8 Phases InertSustain Phenylhexyl columns are bonded with phenylhexyl groups,

More information

Ultra Columns. also available. ordering note

Ultra Columns. also available. ordering note : 3μm or 5μm particles; 100Å pore size Our broadest selection of stationary phases, including unique phases. High density bondings, for maximum retention. High-purity, Type B silica gives excellent peak

More information

Restek Ultra II HPLC Columns

Restek Ultra II HPLC Columns Restek Ultra II HPLC Columns THE Choice for All U(HPLC) Systems November 2009 1 www.chromtech.net.au, sales@chromtech.net.au, Tel: 03 9762 2034, Fax: 03 9761 1169 Topics for Today Introducing Restek Ultra

More information

NUCLEODUR. Professional solutions for HPLC. An optimized phase for every field of application.

NUCLEODUR. Professional solutions for HPLC. An optimized phase for every field of application. NUCLEODUR Professional solutions for HPLC An optimized phase for every field of application Contents / Customer service NUCLEODUR high purity silica Overview of NUCLEODUR phases Summary of available modifications

More information

C30 ISOMERS HAVE MET THEIR MATCH

C30 ISOMERS HAVE MET THEIR MATCH C30 ISOMERS HAVE MET THEIR MATCH INTRODUCING THE NEW! Built on proven Fused-Core particle technology, the is designed to deliver fast separations ideal for lipids and isomers compared to your C18. FEATURES

More information

A New HILIC/RP Mixed-Mode Column and Its Applications in Surfactant Analysis

A New HILIC/RP Mixed-Mode Column and Its Applications in Surfactant Analysis A New HILIC/RP Mixed-Mode Column and Its Applications in Surfactant Analysis X. Liu, C. Pohl, Dionex Corporation, Sunnyvale, CA, USA ABSTRACT Although reversed-phase (RP) silica columns (e.g., C18 and

More information

Roc On with These Dependable LC Columns

Roc On with These Dependable LC Columns Roc LC s Conventional column built to be the cornerstone for your lab; pressure rated for any 400 bar system. Solid and reliable delivers the peak shape, reproducibility, ruggedness, and performance you

More information

SPE Cartridges. All Finneran Products Are Certified. Conditioning Sample application Wash Elution

SPE Cartridges. All Finneran Products Are Certified. Conditioning Sample application Wash Elution All Finneran Products Are Certified Finneran Solid Phase Extraction (SPE) cartridges provide a fast and efficient sample clean-up and concentration prior to analysis through GC, HPLC, and/or other instrument

More information

ACE CN-ES. Extra Stability. Extended Spacer. Enhanced Selectivity ACE. Combining CN polar selectivity with enhanced hydrophobicity

ACE CN-ES. Extra Stability. Extended Spacer. Enhanced Selectivity ACE. Combining CN polar selectivity with enhanced hydrophobicity ACE CN-ES Combining CN polar selectivity with enhanced hydrophobicity Extended Spacer Extra Stability New stationary phase technology for UHPLC and HPLC separations Alternative polar selectivity for method

More information

Reversed-Phase Columns (Other than ODS)

Reversed-Phase Columns (Other than ODS) 7 Reversed-Phase Columns (ther than DS) Types and characteristics of reversed-phase columns -- 9, 9 YMC-Pack Pro C8, C--------------------------- 96 YMC-Pack C 8 --------------------------------------

More information

176 YMC Chiral Columns

176 YMC Chiral Columns 176 YMC Chiral Columns YMC Chiral Columns 177 Chiral Columns Content YMC Chiral NEA(R)(S)... 178-181 YMC Chiral CD BR... 182-185 Ordering Information... 186 HPLC Columns for Optical Isomer Separation Introduction

More information

Phenyl-Hexyl. UHPLC Columns. lternate, complementary selectivity to C18 and C8 bonded phases

Phenyl-Hexyl. UHPLC Columns. lternate, complementary selectivity to C18 and C8 bonded phases Phenyl-Hexyl UHPLC Columns lternate, complementary selectivity to A C8 and C8 bonded phases articularly recommended for P compounds containing aromatic groups xcellent bonded phase stability for E durable,

More information

Fortis Method Development Options

Fortis Method Development Options Method Dev Fortis Method Development Options Choice of Stationary phase functionality Based on Ultra pure silica Reversed Phase (RP) and Normal Phase (NP) options Fortis Ho - Polar endcapped C8 - Increased

More information

Agilent Technologies Prep LC Columns

Agilent Technologies Prep LC Columns Agilent Technologies Prep LC Columns Agilent Technologies Prep LC Columns Agilent Technologies has always taken seriously its responsibility to ensure your success. That s why all our instruments and supplies

More information

SeQuant ZIC -HILIC For all who expect more...

SeQuant ZIC -HILIC For all who expect more... SeQuant ZIC -ILIC For all who expect more... The better choice for PLC and LC/MS of all types of polar and hydrophilic compounds EMD Millipore Corp. is a subsidiary of Merck KGaA, Darmstadt, Germany Poor

More information

APPLICATIONS TN A Comparison of Various Kinetex C18 Phases USP: L1

APPLICATIONS TN A Comparison of Various Kinetex C18 Phases USP: L1 APPLICATIONS A Comparison of Various Kinetex C18 Phases Zeshan Aqeel and Jeff Layne Phenomenex, Inc., 411 Madrid Ave., Torrance, CA 91 USA Introduction When performing reversed phase LC separations, there

More information

pert HR- the professional concept of innovative SPE phases polymer-based RP-phases and mixed-mode ion exchange phases

pert HR- the professional concept of innovative SPE phases polymer-based RP-phases and mixed-mode ion exchange phases HR- pert the professional concept of innovative SPE phases polymer-based RP-phases and mixed-mode ion exchange phases CHROMABOND HR- pert CHROMABOND HR-Xpert the innovative concept of five polymer-based

More information

SeQuant ZIC -HILIC For all who expect more...

SeQuant ZIC -HILIC For all who expect more... SeQuant ZIC -ILIC For all who expect more... The better choice for PLC and LC/MS of all types of polar and hydrophilic compounds EMD Millipore is a division of Merck KGaA, Darmstadt, Germany Poor retention

More information

LC Columns with Liquid Separation Cell Technology

LC Columns with Liquid Separation Cell Technology Obelisc LC Columns with Liquid Separation Cell Technology Obelisc HPLC Columns - Liquid Separation Cell Technology Introduction Obelisc HPLC columns are the latest, innovative columns from SIELC Technologies,

More information

Hyper-fast & Super-rugged

Hyper-fast & Super-rugged Hyper-fast & Super-rugged UHPLC & HPLC columns FALL 2013 PRODUCT CATALOG Hyper-fast & Super-rugged UHPLC & HPLC columns he introduction of HALO columns, developed using innovative Fused-Core particle

More information

Chromatogram Search Tool Search by compound name, synonym, CAS # or keyword Pinnacle II Columns

Chromatogram Search Tool Search by compound name, synonym, CAS # or keyword   Pinnacle II Columns : 3μm or 5μm particles; 110Å pore size Silica at, for total control of quality and reproducibility. Excellent replacement for the original Hypersil material. Physical and chromatographic properties similar

More information

Systematic Evaluation of Solid Phase Extraction (SPE) Chemistries for the Determination of Acidic, Neutral, and Basic Drugs

Systematic Evaluation of Solid Phase Extraction (SPE) Chemistries for the Determination of Acidic, Neutral, and Basic Drugs Systematic Evaluation of Solid Phase Extraction (SPE) Chemistries for the Determination of Acidic, Neutral, and Basic Drugs Laura Marlatt, An Trinh, and David S. Bell Supelco, 595 North Harrison Road,

More information

LC/MS Analysis of Various Hydrophilic Compounds Using a Polymer-Based Amino Column - Shodex TM HILICpak TM VG-50 2D

LC/MS Analysis of Various Hydrophilic Compounds Using a Polymer-Based Amino Column - Shodex TM HILICpak TM VG-50 2D LC/MS Analysis of Various Hydrophilic Compounds Using a Polymer-Based Amino Column - Shodex TM HILICpak TM VG-50 2D Introduction Components of pharmaceutical products and food products often include high

More information

Transfer and Speed-up of Methods to Fused-Core Particle Columns EPA Method 1694

Transfer and Speed-up of Methods to Fused-Core Particle Columns EPA Method 1694 Transfer and Speed-up of Methods to Fused-Core Particle Columns EPA Method 1694 Ed Mauney, Hillel K. Brandes, William H. Campbell, Wayne K. Way, Richard A. Henry, David S. Bell, and Carmen T. Santasania

More information

Columns for HPLC. Columns for HPLC

Columns for HPLC. Columns for HPLC Basic principles of preparative HPLC Basically, preparative HPLC follows the same rules as analytical scale chromatography. However, there are important differences in the aims of the two techniques. In

More information

HPLC Application Notes

HPLC Application Notes HPLC Application Notes Antibiotics. Ampicillin. Chloramphenicol Prestige C8 5µm, 50 x 4.6mm CAN/MeOH/(NH 4 )HPO 4 (0/0/70) UV at 0nm Injection Volume µl Amino Acids. L-Valine. L-Phenylalanine Polar Embedded

More information

The LC Column Playbook

The LC Column Playbook The LC Column Playbook Mark Powell Applications Engineer Technical Support 1 Overview How do we achieve our goal: Resolution? Efficiency Particle size Column length Selectivity Bonded phase Mobile phase

More information

Physical Properties. Silica

Physical Properties. Silica InertSustain InertSustain InertSustain is an ultra performance sugar analysis column using a weak ion-exchanger, which can be used in a ILIC mode as well. The introduction of primary amine groups prevents

More information

Vitamin Analysis by HPLC

Vitamin Analysis by HPLC Vitamin Analysis by HPLC Technical Note Vitamins are trace-amount organic compounds that regulate physiological functions of an organ- COSMOSIL 5C18 Fat-soluble Vitamins (1) Fat-soluble Vitamins Standard

More information

Rapid and sensitive UHPLC screening of additives in carbonated beverages with a robust organic acid column

Rapid and sensitive UHPLC screening of additives in carbonated beverages with a robust organic acid column APPLICATION NOTE 21673 Rapid and sensitive UHPLC screening of additives in carbonated beverages with a robust organic acid column Authors Aaron Lamb and Brian King, Thermo Fisher Scientific, Runcorn, UK

More information

The Raptor HILIC-Si Column

The Raptor HILIC-Si Column The Raptor HILIC-Si Column With Raptor LC columns, Restek chemists became the first to combine the speed of superficially porous particles (also known as SPP or core-shell particles) with the resolution

More information

Separation of Macrocyclic Lactones (Avermectins) on FLARE C18 MM & FLARE C18+ Columns

Separation of Macrocyclic Lactones (Avermectins) on FLARE C18 MM & FLARE C18+ Columns Separation of Macrocyclic Lactones (Avermectins) on FLARE C8 MM & FLARE C8+ Columns Introduction Diamond Analytics Technical Note: T05- Avermectins are a series of 6-membered macrocyclic lactone derivatives

More information

HxSil C18, 4.6 x 150mm, 5um (P/N 79868) 1. Oxybenzone 2. Octocrylene 3. Octyl Methoxycinnamate 4. Avobenzone (Parsol 1789) 5.

HxSil C18, 4.6 x 150mm, 5um (P/N 79868) 1. Oxybenzone 2. Octocrylene 3. Octyl Methoxycinnamate 4. Avobenzone (Parsol 1789) 5. Page 1 of 5 U S A HPLC Application Index Ordering Information Contact HPLC Support Silica-based columns for general separations: Separation of closely related PAH's Better retention of poorly retained

More information

Gerry Hendrickx Regional Sales Manager Central Europe. Developments in Waters Column Chemistries : BEH Technology

Gerry Hendrickx Regional Sales Manager Central Europe. Developments in Waters Column Chemistries : BEH Technology Gerry Hendrickx Regional Sales Manager Central Europe Developments in Waters Column Chemistries : BEH Technology XTerra Columns: First Generation Hybrid Particles Initial Launch 1999 Advantages of XTerra

More information

ACE C18-AR. A C18 bonded phase with unique selectivity. Guaranteed reproducibility. Exceptional bonded phase stability

ACE C18-AR. A C18 bonded phase with unique selectivity. Guaranteed reproducibility. Exceptional bonded phase stability ACE C8-AR A C8 bonded phase with unique selectivity Guaranteed reproducibility Exceptional bonded phase stability Hydrophobic and aromatic mixed mode interaction High efficiency µm, µm, µm and 0µm particles

More information

Choosing Preparative Columns

Choosing Preparative Columns Choosing Preparative Relationship between Column I.D., Sample Loading Volume and Flow Rate In preparative operations, column internal diameter sizes from 6.0 to 100 mm are widely used. When the analytical

More information

Studies on Stationary Phase Selectivity for Solid-Core Particles

Studies on Stationary Phase Selectivity for Solid-Core Particles Studies on Stationary Phase Selectivity for Solid-Core Particles Richard A. enry, Wayne K. Way, Carmen T. Santasania, and David S. Bell Supelco, Div. of Sigma-Aldrich, Bellefonte, PA 6823 USA T4060 sigma-aldrich.com

More information

Aeris. Precision Engineered Core- Shell Particles for Ultra-High Resolution BioSeparations. Aeris PEPTIDE. Aeris WIDEPORE

Aeris. Precision Engineered Core- Shell Particles for Ultra-High Resolution BioSeparations. Aeris PEPTIDE. Aeris WIDEPORE Aeris Precision Engineered Core- Shell Particles for Ultra-High Resolution BioSeparations Aeris is a specialized line of reversed phase core-shell UHPLC columns, built exclusively for the ultra-high performance

More information

YMC HILIC Columns for Polar Analytes

YMC HILIC Columns for Polar Analytes YMC HILIC Columns for Polar Analytes Polar Analytes Advantages In general, reliable applications in HPLC require a minimum retention factor (k ) of 2. In the widely used reversed phase methods polar compounds

More information

Normal Phase Chemistries

Normal Phase Chemistries 170 Normal Phases Normal Phases 171 Normal Phase Chemistries Contents YMC-Pack SIL (Silica)... 172-173 YMC-Pack PVA-Sil... 174-175 YMC-Pack CN (Cyano)... 176-177 YMC-Pack Diol-NP... 178-179 YMC-Pack Polyamine

More information

Chapter 22: Gas and Liquid Chromatography. Liquid Chromatography: Stationary Phases and Mobile Phases: Normal Phase: Reversed Phase:

Chapter 22: Gas and Liquid Chromatography. Liquid Chromatography: Stationary Phases and Mobile Phases: Normal Phase: Reversed Phase: Chapter 22: Gas and Liquid Chromatography Liquid Chromatography: Stationary Phases and Mobile Phases: Normal Phase: Reversed Phase: Ion Exchange Chromatography Page 1 of 5 Pinnacle DB Ideal for applications

More information

Tenofovir disoproxil fumarate (Tenofoviri disoproxili fumaras)

Tenofovir disoproxil fumarate (Tenofoviri disoproxili fumaras) C 19 H 30 N 5 O 10 P. C 4 H 4 O 4 Relative molecular mass. 635.5. Chemical names. bis(1-methylethyl) 5-{[(1R)-2-(6-amino-9H-purin-9-yl)-1-methylethoxy]methyl}-5-oxo-2,4,6,8-tetraoxa-5-λ 5 - phosphanonanedioate

More information

DrugSmartCup & DrugSmartDip Accuracy Report as produced by Ameditech, Inc.

DrugSmartCup & DrugSmartDip Accuracy Report as produced by Ameditech, Inc. Accuracy The accuracy of the DrugSmart Drugs of Abuse Tests was evaluated in comparison to commercially available drug screen tests. Sixty (60) negative urine samples collected from presumed non-user volunteers

More information

YMC-Triart C18. Multilayer hybrid material for HPLC ph and temperature stability. Innovative micro-reactor technology

YMC-Triart C18.  Multilayer hybrid material for HPLC ph and temperature stability. Innovative micro-reactor technology YMC-Triart C18 Versatile hybrid silica based HPLC column The Selectivity Company Multilayer hybrid material for HPLC ph and temperature stability Innovative micro-reactor technology www.ymc.de 2 YMC-Triart

More information

Evaluation of UHPLC System Performance Under High Throughput Conditions. William Hedgepeth, Masatoshi Takahashi, Shimadzu Scientific Instruments

Evaluation of UHPLC System Performance Under High Throughput Conditions. William Hedgepeth, Masatoshi Takahashi, Shimadzu Scientific Instruments Evaluation of UHPLC System Performance Under High Throughput Conditions William Hedgepeth, Masatoshi Takahashi, Shimadzu Scientific Instruments Introduction The use of UHPLC technology has continued to

More information

VertiSep TM PRP. HPLC Columns. VertiSep TM PRP HPLC Columns

VertiSep TM PRP. HPLC Columns. VertiSep TM PRP HPLC Columns VertiSep TM PRP ph stable range 1-14 Excellent analyte recovery Very rugged, long lasting materials Great peak shape for all types on compounds Good reproducibility from column to column VertiSep TM PRP-L21

More information

Title Revision n date

Title Revision n date A. THIN LAYER CHROMATOGRAPHIC TECHNIQUE (TLC) 1. SCOPE The method describes the identification of hydrocortisone acetate, dexamethasone, betamethasone, betamethasone 17-valerate and triamcinolone acetonide

More information

Determination of Water- and Fat-Soluble Vitamins in Nutritional Supplements by HPLC with UV Detection

Determination of Water- and Fat-Soluble Vitamins in Nutritional Supplements by HPLC with UV Detection Application Note 5 Determination of Water- and Fat- Vitamins in Nutritional Supplements by HPLC with UV Detection Introduction Vitamins are a well-known a group of compounds that are essential for human

More information

Am I getting the very best value from my UHPLC analyses?

Am I getting the very best value from my UHPLC analyses? Am I getting the very best value from my UHPLC analyses? Stephen Luke LC Columns Product Manager 1 Primary reasons for UHPLC use Very fast Very high resolution Column 2.1 x 50 mm Column 2.1 x 150 mm Run

More information

pert HR- the professional concept of innovative SPE phases polymer-based RP-phases and mixed-mode ion exchange phases available

pert HR- the professional concept of innovative SPE phases polymer-based RP-phases and mixed-mode ion exchange phases available HR- pert the professional concept of innovative SPE phases available in 45 µm and 85 µm polymer-based RP-phases and mixed-mode ion exchange phases CHroMABoNd Hr- pert CHroMABoNd Hr-Xpert the innovative

More information

LC Columns - Exceed the limit. A premium inert range of LC columns delivering optimal peak shape. ProteCol -P PEEK lined

LC Columns - Exceed the limit. A premium inert range of LC columns delivering optimal peak shape. ProteCol -P PEEK lined ProteCol LC Columns - Exceed the limit A premium inert range of LC columns delivering optimal peak shape. ProteCol -G Glass lined ProteCol -P PEEK lined B C A D E F A Column end cap B PEEK frit housing

More information

TENOFOVIR TABLETS: Final text for addition to The International Pharmacopoeia (June 2010)

TENOFOVIR TABLETS: Final text for addition to The International Pharmacopoeia (June 2010) June 2010 TENOFOVIR TABLETS: Final text for addition to The International Pharmacopoeia (June 2010) This monograph was adopted at the Forty-fourth WHO Expert Committee on Specifications for Pharmaceutical

More information

YMC-Triart C18. Multi-layer hybrid material for HPLC ph and temperature stability. Innovative micro-reactor technology

YMC-Triart C18.  Multi-layer hybrid material for HPLC ph and temperature stability. Innovative micro-reactor technology YMC-Triart C18 Versatile hybrid silica based HPLC Column The Selectivity Company Multi-layer hybrid material for HPLC ph and temperature stability Innovative micro-reactor technology www.ymc.de 2 YMC-Triart

More information

RITONAVIRI COMPRESSI RITONAVIR TABLETS. Final text for addition to The International Pharmacopoeia (July 2012)

RITONAVIRI COMPRESSI RITONAVIR TABLETS. Final text for addition to The International Pharmacopoeia (July 2012) July 2012 RITONAVIRI COMPRESSI RITONAVIR TABLETS Final text for addition to The International Pharmacopoeia (July 2012) This monograph was adopted at the Forty-sixth WHO Expert Committee on Specifications

More information

HPLC Column for Structural Isomers COSMOSIL Cholester

HPLC Column for Structural Isomers COSMOSIL Cholester HPLC Column for Structural Isomers COSMOSIL ol bonded stationary phase Increased stereoselectivity Improved resolution for geometric isomers Silica Gel Average Particle Size Average Pore Size Stationary

More information

Waters Amide Column Technology For Food Analysis

Waters Amide Column Technology For Food Analysis Waters Amide Column Technology For Food Analysis Euan Ross Business Development Manager Chemistry perations Europe 2012 Waters Corporation 1 verview verview of HILIC Retention mechanisms and characteristics

More information

For Far. Greater. UHPLC Column Performance You Must Have Kinetex Core-Shell UHPLC Columns.

For Far. Greater. UHPLC Column Performance You Must Have Kinetex Core-Shell UHPLC Columns. For Far Greater UHPLC Column Performance... You Must Have Kinetex Core-Shell UHPLC Columns www.phenomenex.com/kinetex The UHPLC Core-Shell Advantage Kinetex Core-Shell Technology produces increased efficiencies

More information

ACE Excel UHPLC Columns

ACE Excel UHPLC Columns Excel UHPLC Columns info@ace-hplc.com Advanced Chromatography Technologies Ltd www.ace-hplc.com Australia & New Zealand contact: infor@winlab.com.au or call + 0 Outline Introduction Key Product Points

More information

Kromasil The way to peak performance in liquid chromatography

Kromasil The way to peak performance in liquid chromatography Kromasil The way to peak performance in liquid chromatography Kromasil product catalogue Kromasil is offered in a wide assortment of columns and in bulk amounts from parts of kilograms to metric tons.

More information

Unequalled durability against water elution. % tr

Unequalled durability against water elution. % tr Unequalled durability against water elution 2 Revolutionary aqueous durability for aminopropyl phase 1 3 4 1. fructose (2.5mg/mL) 3. sucrose (2.5mg/mL) 500 hr 2. glucose 400 hr Aqueous to non-aqueous Normal

More information

Impurity Profiling of Carbamazepine by HPLC/UV

Impurity Profiling of Carbamazepine by HPLC/UV Application Note: 52049 Impurity Profiling of Carbamazepine by HPLC/UV Terry Zhang, Guifeng Jiang, Thermo Fisher Scientific, San Jose, CA, USA Key Words Accela Hypersil GOLD Carbamazepine Drug Analysis

More information

Application Note. Separation of clindamycin phosphate and process impurities. Summary. Introduction. Category Pharmaceutical analysis Matrix

Application Note. Separation of clindamycin phosphate and process impurities. Summary. Introduction. Category Pharmaceutical analysis Matrix Application Note Separation of clindamycin phosphate and process impurities Category Pharmaceutical analysis Matrix Drugs Method UHPLC Keywords Antibiotics, process impurities, quality control Analytes

More information

ACE HILIC + + UHPLC and HPLC Columns. For Reproducible Polar Analyte Separations. Three HILIC Column Chemistries Available

ACE HILIC + + UHPLC and HPLC Columns. For Reproducible Polar Analyte Separations. Three HILIC Column Chemistries Available ACE HILIC UHPLC and HPLC s For Reproducible Polar Analyte Separations Three HILIC Chemistries Available ACE HILIC s What is HILIC? Hydrophilic Interaction Liquid Chromatography (HILIC) was first described

More information

A Novel Solution for Vitamin K₁ and K₂ Analysis in Human Plasma by LC-MS/MS

A Novel Solution for Vitamin K₁ and K₂ Analysis in Human Plasma by LC-MS/MS A Novel Solution for Vitamin K₁ and K₂ Analysis in Human Plasma by LC-MS/MS By Shun-Hsin Liang and Frances Carroll Abstract Vitamin K₁ and K₂ analysis is typically complex and time-consuming because these

More information

4.5 Minute Analysis of Benzodiazepines in Urine and Whole Blood Using LC/MS/MS and an Ultra Biphenyl Column

4.5 Minute Analysis of Benzodiazepines in Urine and Whole Blood Using LC/MS/MS and an Ultra Biphenyl Column Clinical, Forensic & Toxicology Applications 4.5 Minute Analysis of Benzodiazepines in Urine and Whole Blood Using LC/MS/MS and an Ultra Biphenyl Column By Amanda Rigdon Abstract A rapid, sensitive method

More information

COSMOSIL HILIC. HPLC Column for Hydrophilic Interaction

COSMOSIL HILIC. HPLC Column for Hydrophilic Interaction PLC Column for ydrophilic Interaction CSMSIL ILIC Triazole bonded stationary phase Enhanced hydrophilic interaction Excellent separation for organic acids Silica Gel Average Particle Size Average Pore

More information

Using Hydrophilic Interaction Chromatography (HILIC) for the Retention of Highly Polar Analytes

Using Hydrophilic Interaction Chromatography (HILIC) for the Retention of Highly Polar Analytes Using Hydrophilic Interaction Chromatography (HILIC) for the Retention of Highly Polar Analytes Eric S. Grumbach,, Diane M. Diehl and Jeffrey R. Mazzeo 2003 Waters Corp. Outline Introduction HILIC Definition

More information

UPLC/MS Monitoring of Water-Soluble Vitamin Bs in Cell Culture Media in Minutes

UPLC/MS Monitoring of Water-Soluble Vitamin Bs in Cell Culture Media in Minutes UPLC/MS Monitoring of Water-Soluble Vitamin Bs in Cell Culture Media in Minutes Catalin E. Doneanu, Weibin Chen, and Jeffrey R. Mazzeo Waters Corporation, Milford, MA, U.S. A P P L I C AT ION B E N E F

More information

Thermo Scientific. GlycanPac AXR-1. Column Product Manual. P/N: April, Part of Thermo Fisher Scientific

Thermo Scientific. GlycanPac AXR-1. Column Product Manual. P/N: April, Part of Thermo Fisher Scientific Thermo Scientific GlycanPac AXR-1 Column Product Manual P/N: April, 2014 Part of Thermo Fisher Scientific Product Manual for GlycanPac AXR-1 Columns GlycanPac AXR-1, 1.9 µm, Analytical, 2.1 x 150 mm (P/N

More information

Extended Temperature Range Impact on HPLC Column Stability and Performance

Extended Temperature Range Impact on HPLC Column Stability and Performance Extended Temperature Range Impact on HPLC Column Stability and Performance Stephanie J. Marin Dale Felix, Jody Clark Selerity Technologies, Inc. Salt Lake City, UT www.selerity.com The Selerity Series

More information

InertSustain Amide 技術資料

InertSustain Amide 技術資料 InertSustain Amide 技術資料 InertSustain Amide Physical Properties Silica Particle Size Surface Area Pore Size Pore Volume Bonded Phase End-capping Carbon Loading ph Range USP Code :ES (Evolved Surface) Silica

More information

CHAPTER 8 HIGH PERFORMANCE LIQUID CHROMATOGRAPHY (HPLC) ANALYSIS OF PHYTOCHEMICAL CONSTITUENTS OF M. ROXBURGHIANUS AND P. FRATERNUS PLANT EXTRACTS

CHAPTER 8 HIGH PERFORMANCE LIQUID CHROMATOGRAPHY (HPLC) ANALYSIS OF PHYTOCHEMICAL CONSTITUENTS OF M. ROXBURGHIANUS AND P. FRATERNUS PLANT EXTRACTS CHAPTER 8 HIGH PERFORMANCE LIQUID CHROMATOGRAPHY (HPLC) ANALYSIS OF PHYTOCHEMICAL CONSTITUENTS OF M. ROXBURGHIANUS AND P. FRATERNUS PLANT EXTRACTS CHAPTER 8: HIGH PERFORMANCE LIQUID CHROMATOGRAPHY (HPLC)

More information

Residue Monograph prepared by the meeting of the Joint FAO/WHO Expert Committee on Food Additives (JECFA), 82 nd meeting 2016.

Residue Monograph prepared by the meeting of the Joint FAO/WHO Expert Committee on Food Additives (JECFA), 82 nd meeting 2016. Residue Monograph prepared by the meeting of the Joint FAO/WHO Expert Committee on Food Additives (JECFA), 82 nd meeting 2016 Aspartame This monograph was also published in: Compendium of Food Additive

More information

Extended Application Note

Extended Application Note Extended Application Note Comparison of 4 μm vs. 2.o Columns in Analysis of Drospirenone/Ethinyl Estradiol Tablet APP A-339 www.mtc-usa.com 1-732-578-1777 INTRODUCTION The formulation of drospirenone and

More information

SPE-LC-MS/MS Method for the Determination of Nicotine, Cotinine, and Trans-3-hydroxycotinine in Urine

SPE-LC-MS/MS Method for the Determination of Nicotine, Cotinine, and Trans-3-hydroxycotinine in Urine SPE-LC-MS/MS Method for the Determination of Nicotine, Cotinine, and Trans-3-hydroxycotinine in Urine J. Jones, Thermo Fisher Scientific, Runcorn, Cheshire, UK Application Note 709 Key Words SPE, SOLA

More information

GlycanPac AXR-1 Columns

GlycanPac AXR-1 Columns CHRMATGRAPHY GlycanPac AXR- Columns For High Resolution Glycan Analysis Product Specifications The Thermo Scientific GlycanPac AXR- columns are highperformance, silica-based HPLC columns for simultaneous

More information

UCT SELECTRA C18 HPLC COLUMN INNOVATION THROUGH CHEMISTRY

UCT SELECTRA C18 HPLC COLUMN INNOVATION THROUGH CHEMISTRY UCT SELECTRA C18 HPLC COLUMN INNOVATION THROUGH CHEMISTRY SELECTRA C18 HPLC COLUMNS Benefits Good choice for easily converting current C18 methods Suitable for most traditional reverse phase analyses High

More information

Analytical Method for 2, 4, 5-T (Targeted to Agricultural, Animal and Fishery Products)

Analytical Method for 2, 4, 5-T (Targeted to Agricultural, Animal and Fishery Products) Analytical Method for 2, 4, 5-T (Targeted to Agricultural, Animal and Fishery Products) The target compound to be determined is 2, 4, 5-T. 1. Instrument Liquid Chromatograph-tandem mass spectrometer (LC-MS/MS)

More information

SUMMARY, CONCLUSION & RECOMMENDATIONS

SUMMARY, CONCLUSION & RECOMMENDATIONS 196 Chapter-5 SUMMARY, CONCLUSION & RECOMMENDATIONS 197 CHAPTER 5 5.1 Summary, Conclusion and Recommendations Summary and Conclusion are drawn based on the work carried out by the author on development

More information

314 Speciality Columns

314 Speciality Columns 314 Speciality Columns Speciality Columns 315 Speciality Columns Contents YMC Carotenoid... 316-317 YMC PAH... 318-319 J sphere ODS... 320-325 Ordering Information... 326 Introduction Unique bonded phases

More information

HPLC Separation Tools for Membrane Protein Purification and Drug Membrane Permeability Prediction

HPLC Separation Tools for Membrane Protein Purification and Drug Membrane Permeability Prediction IAM CHRMATGRAPHY IAM CHRMATGRAPHY HPLC Separation Tools for Membrane Protein Purification and Drug Membrane Permeability Prediction Immobilized Artificial Membrane (IAM) technology is an innovative approach

More information

Terence Hetzel, Thorsten Teutenberg, Torsten C. Schmidt Institut für Energie- und Umwelttechnik e. V.

Terence Hetzel, Thorsten Teutenberg, Torsten C. Schmidt Institut für Energie- und Umwelttechnik e. V. Terence Hetzel, Thorsten Teutenberg, Torsten C. Schmidt Institut für Energie- und Umwelttechnik e. V. Method development of cytotoxic drugs selectivity IAC Seminar, 06.03.2015 Content Introduction Definition

More information

Biphenyl. Stationary Phase: Fast, Rugged Raptor Columns with Time-Tested Selectivity. Pure Chromatography. Selectivity Accelerated

Biphenyl. Stationary Phase: Fast, Rugged Raptor Columns with Time-Tested Selectivity. Pure Chromatography. Selectivity Accelerated Fast, Rugged Raptor Columns with Time-Tested Selectivity Selectivity Accelerated Stationary Phase: Biphenyl CH 3 Si CH 3 O Pure Chromatography www.restek.com/raptor The Raptor Biphenyl Column With Raptor

More information

Application Note. Abstract. Authors. Pharmaceutical

Application Note. Abstract. Authors. Pharmaceutical Analysis of xycodone and Its Metabolites-oroxycodone, xymorphone, and oroxymorphone in Plasma by LC/MS with an Agilent ZRBAX StableBond SB-C18 LC Column Application ote Pharmaceutical Authors Linda L.

More information

Analysis of Common Sweeteners and Additives in Beverages with the PerkinElmer Flexar FX-15 System Equipped with a PDA Detector

Analysis of Common Sweeteners and Additives in Beverages with the PerkinElmer Flexar FX-15 System Equipped with a PDA Detector application Note Liquid Chromatography Author Njies Pedjie PerkinElmer, Inc. Shelton, CT 06484 USA Analysis of Common Sweeteners and Additives in Beverages with the PerkinElmer Flexar FX-15 System Equipped

More information

ARTESUNATE TABLETS: Final text for revision of The International Pharmacopoeia (December 2009) ARTESUNATI COMPRESSI ARTESUNATE TABLETS

ARTESUNATE TABLETS: Final text for revision of The International Pharmacopoeia (December 2009) ARTESUNATI COMPRESSI ARTESUNATE TABLETS December 2009 ARTESUNATE TABLETS: Final text for revision of The International Pharmacopoeia (December 2009) This monograph was adopted at the Forty-fourth WHO Expert Committee on Specifications for Pharmaceutical

More information

Separation of Vitamin D and Vitamin D Metabolites on FLARE C18 MM (Mixed Mode) HPLC Column

Separation of Vitamin D and Vitamin D Metabolites on FLARE C18 MM (Mixed Mode) HPLC Column Diamond Analytics Technical Note: T131-1 Separation of Vitamin D and Vitamin D Metabolites on FLARE C1 MM (Mixed Mode) HPLC Column Introduction In this technical note, the versatility of the diamond-based

More information