Three novel chiral stationary phases (CSPs) were prepared by regioselective chemical immobilization of mono(6(A)-N-allylamino-6(A)-deoxy)perphenylcarbamoylated (PICD) alpha-, beta-, and gamma-cyclodextrins (CDs) onto silica support via hydrosilylation. Their enantioseparation properties in high performance liquid chromatography (HPLC) were evaluated with a large spectrum of racemates including flavanone compounds, beta-adrenergic blockers, amines and non-protolytic compounds. The effect of CD's cavity size on enantioseparation abilities was studied and discussed. The results indicated that CD's surface loading at silica support played an important role in the enantioseparation on these CSPs under normal-phase conditions while inclusion phenomena contributed the major driving force under reverse-phase conditions. As expected, alpha-PICD demonstrated the best resolutions towards flavonone and most aromatic alcohols under normal-phase conditions with the highest surface loading; while Fujimura's competitive inclusion model can be applied to explain the better enantioseparations towards beta-adrenergic blockers, amines and non-protolytic compounds with alpha- and beta-PICD CSPs. gamma-PICD CSP showed superior enantioseparation ability for sterically encumbered analytes like flavanone compounds under both normal-phase and reversed phase conditions. (C) 2011 Elsevier B.V. All rights reserved.
WANG Xia LI Wenzhi LIU Chunhui CHEN Liren LI Yongmin Lanzhou Institute of Chemical Physics The Chinese Academy of Sciences Lanzhou China Chemistry and Chemical Engineer College Liaocheng University Liaocheng China
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WANG Xia LI Wenzhi LIU Chunhui CHEN Liren LI Yongmin Lanzhou Institute of Chemical Physics The Chinese Academy of Sciences Lanzhou China Chemistry and Chemical Engineer College Liaocheng University Liaocheng China