4.5 Article

Chiral capillary electrophoresis with cationic pyrrolidinium-beta-cyclodextrin derivatives as chiral selectors

Journal

JOURNAL OF SEPARATION SCIENCE
Volume 33, Issue 12, Pages 1797-1805

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/jssc.200900732

Keywords

Capillary electrophoresis; Enantioseparation; Positively charged beta-cyclodextrin

Funding

  1. Singapore Ministry of Education Academic Research [ARC 9/06]
  2. Agency for Science, Technology and Research [092 101 0056]
  3. Queensland State Government

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New single-isomer, cationic beta-cyclodextrins, including mono-6-deoxy-6-pyrrolidine-beta-cyclodextrin chloride (pyCDCl), mono-6-deoxy-6-(N-methyl-pyrrolidine)-beta-cydodextrin chloride (N-CH3-pyCDCl), mono-6-deoxy-6-(N-(2-hydroxyethyl)-pyrrolidine)-beta-cyclodextrin chloride (N-EtOH-pyCDCl), mono-6-deoxy-6-(2-hydroxymethyl-pyrrolidine)-beta-cyclodextrin chloride (2-MeOH-pyCDCl) were synthesized and used as chiral selectors in capillary electrophoresis for the enantioseparation of carboxylic and hydroxycarboxylic acids and dansyl amino acids. The unsubstituted pyCDCl exhibited the greatest resolving ability. Most analytes were resolved over a wide range of pH from 6.0 to 9.0 with this chiral selector. In general, increasing pH led to a decrease in resolution. The effective mobilities of all the analytes were found to decrease with increasing CD concentration. The optimal concentration for most carboxylic acids and dansyl amino acid was in the range 5-7.5 mM and >15 mM for hydroxycarboxylic acids. H-1 NMR experiments provided direct evidence of inclusion in the CD cavity.

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