Enantiomer separation by CEC |
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Authors: | Jun Zhu Hanfa Zou Wei Shi Jianzhong Rui Jianyi Ni Yukui Zhang |
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Institution: | (1) National Chromatographic Research & Analysis Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 116011 Dalian, China |
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Abstract: | Three chiral compounds were successfully separated in a short time with two enantiomer separation models on packed-capillary
electrochromatography (CEC). (i) 75 μm I.D. capillaries were packed with 5 μm β-cyclodextrin (βCD) chiral stationary phase
(CSP). Effects of voltage, pH and concentration of organic modifier on electroosmotic flow (EOF) and chiral separations were
investigated systematically. Enantiomers of a neutral compound (benzoin) and a neutral drug (mephenytoin) were separated within
a short time with high efficiency. Efficiency of 32 000 theoretical plates per meter and resolution (R8) of 1.42 were achieved for enantiomers of benzoin using a βCD packed column with 6.2crn packed length. Efficiency of 45 000
theoretical plates per meter andR8 of 3.40 were obtained for enantiomers of mephenytoin. Especially, the enantiomer separation of mephenytion was performed
in just 3.4 min with R8 of 2.60. (ii) 75 μm I.D. capillary was packed with octadecylsilica particles (ODs). Chiral separation of a basic drug, propranolol,
was studied with chiral agent, via addition of the dimethyl-β-cyclodextrin (DM β-CD) directly into the mobile phase on this
column. Baseline separation and efficiency of 81 000 theoretical plates per meter were achieved for propranolol.
Project supported by the Natural Science Foundation of Liaoning Province, China, the National Natural Science Foundation of
China (Grant No.29875030), and the Excellent Young Scientist Award from the National Natural Science Foundation of China.
(Grant No.29725512). |
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Keywords: | packed-capillary electrochromatography enantiomer separation chirel selector fast analysis high eficiency resolution |
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