Study of the Enantioselectivity and Recognition Mechanism of Allyl‐β‐CD Modified Organic Polymer Monolithic Capillary Column

Author:

Jia Chaoheng12,Li Futao2,Li Anqi2,Li Qiwen2,Huang Lu2ORCID

Affiliation:

1. College of Chemical Engineering Fuzhou University Fuzhou China

2. College of Materials and Chemical Engineering, Fujian Provincial University Engineering Research Center of Green Materials and Chemical Engineering Minjiang University Fuzhou China

Abstract

ABSTRACTAllyl‐β‐CD was synthesized and used as the chiral functional monomer to prepare chiral organic polymer monolithic columns in capillary HPLC. First, the enantioselectivity of the prepared allyl‐β‐CD modified organic polymer monolithic capillary columns was investigated. Then, the influences of enantioseparation conditions of chiral drugs were further explored. Finally, the recognition mechanism was studied by molecular docking with AutoDock. Complete enantioseparations of four chiral drugs as well as partial enantioseparations of eight chiral drugs have been achieved. Results showed that the RSD values for run‐to‐run, day‐to‐day, and column‐to‐column variations ranged from 1.2% to 4.6%, 1.4% to 4.7%, and 2.0% to 6.1%, respectively. The enantioselectivity factor rather than resolution is correlated with the binding free energy difference between enantiomers with allyl‐β‐CD. Furthermore, the abundant ether bonds, hydroxyl groups, and hydrophobic cavities in cyclodextrin are responsible for the enantioseparation ability of the chiral monolithic capillary columns.

Funder

Science and Technology Planning Project of Fuzhou

Science Fund for Distinguished Young Scholars of Fujian Province

Publisher

Wiley

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