• Title/Summary/Keyword: Chiralpak IC

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The Effect of Mobile Phase and Dissolving Solvent on the Enantiomer Separation Using a Covalently Immobilized Chiral Column Derived from Polysaccharide Derivative (다당유도체로 공유결합된 카이랄 칼럼에서 이동상과 분석물질의 용매가 거울상 이성질체의 광학분할에 미치는 영향)

  • Huang, Hu;Lee, Beom-Gyu;Baek, Chae-Sun;Lee, Won-Jae
    • Journal of the Korean Chemical Society
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    • v.53 no.2
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    • pp.137-143
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    • 2009
  • Liquid chromatographic enantiomer separation of N-tert-butoxycarbonyl (BOC) $\alpha$-amino acids and their ethyl esters was performed on covalently immobilized chiral column (Chiralpak IC) derived from polysaccharide derivative. The solvent versatility of the covalently immobilized Chiralpak IC in enantiomer separation of N-BOC $\alpha$-amino acid ethyl ester derivatives was shown and the chromatographic parameters of their enantioselectivities and resolution factors were greatly influenced by the nature of the mobile phase. Also the effect on the dissolving solvent for these analytes on the enantiomer separation using the same mobile phase and the examples of preparative enantiomer separation on analytical column were shown.

A Newly Developed Analytical and Semi-preparative Enantiomer Separation of Fluoxetine using Polysaccharide-derived Chiral Stationary Phases by High Performance Liquid Chromatography (고성능 액체 크로마토그래피에 의한 다당 유도체의 키랄 고정상에서 플록세틴의 새롭게 개발된 분석 및 반분취의 광학분리)

  • Kim, Seok Jin;Nam, Kyung Wook;Park, Bohyun;Islam, Md. Fokhrul;Lee, Wonjae
    • KSBB Journal
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    • v.31 no.3
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    • pp.186-191
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    • 2016
  • A liquid chromatographic method for the enantiomer separation of fluoxetine was performed using covalently bonded and coated type polysaccharide-derived chiral stationary phases (CSPs). The degree of enantioseparation is affected by the used CSPs and mobile phases. The performance of Chiralpak IC was superior to the other CSPs used in this study. Out of various solvent composition and additives, the greatest separation and resolution was observed using Chiralpak IC with mobile phase of 2-propanol in hexane with diethylamine as an additive. Semi-preparative separation of fluoxetine was performed on the analytical Chiralpak IC column to obtain (R)- and (S)-fluoxetine enantiomer with high chemical and optical purity. From the overall study, the developed liquid chromatographic method on polysaccharide-derived CSPs is expected to be very useful for the enantiomer separation of fluoxetine.

Liquid Chromatographic Resolution of α-Amino Acid Esters as Benzophenone Imine Derivatives (아미노산 에스테르의 벤조피논 이민 유도체의 액체 크로마토그래피의 광학분리)

  • Yun, Won-Nam;Xu, Wen Jun;Huang, Hu;Lee, Won-Jae
    • KSBB Journal
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    • v.27 no.3
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    • pp.167-171
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    • 2012
  • A convenient liquid chromatographic enantiomer separation of several ${\alpha}$-amino acid esters as benzophenone Schiff base derivatives on covalently immobilized chiral stationary phases (CSPs) derived from polysaccharide derivatives was developed. The benzophenone imine derivatives of ${\alpha}$-amino acid esters were readily prepared by stirring benzophenone imine and the ${\alpha}$-amino acid ester hydrochloride salts in 2-propanol. The chromatographic conditions used on all CSPs were 0.5% or 5% 2-propanol/hexane (V/V) as the mobile phases at 1 mL/min of flow rate and UV 254 nm detection. The performance of Chiralpak IC among all CSPs was superior to that of the other CSPs for resolution of benzophenone imine derivatives of ${\alpha}$-amino acid esters. It is expected that the developed analytical method will be useful for enantiomer resolution of other ${\alpha}$-amino acid esters as benzophenone Schiff base derivatives.