Sawada H, Jinno K
School of Materials Science, Toyohashi University of Technology, Japan.
Electrophoresis. 1999 Jan;20(1):24-30. doi: 10.1002/(SICI)1522-2683(19990101)20:1<24::AID-ELPS24>3.0.CO;2-6.
A linear polymer-coated capillary was prepared by in-capillary copolymerization of N-tert-butylacrylamide (TBAAm) with a charged monomer, 2-acrylamido-2-methyl-1-propanesulfonic acid (AMPS), after the capillary pretreatment with a bifunctional reagent. The coated capillaries were applied in capillary electrochromatographic (CEC) separation of small neutral compounds. Hydrophobic groups in the linear polymer, which were immobilized onto the capillary surface, functioned as the stationary phase in reversed-phase CEC separation, and charged groups in the linear polymer generated electroosmotic flow (EOF) along the column. The coated capillaries were prepared by a simple procedure. Moreover, the reproducibility with respect to EOF rate and migration times of the solutes was excellent. The results for CEC separation of small molecules using the linear polymer-coated capillaries are presented.
在使用双功能试剂对毛细管进行预处理后,通过N-叔丁基丙烯酰胺(TBAAm)与带电单体2-丙烯酰胺基-2-甲基-1-丙磺酸(AMPS)在毛细管内进行共聚反应,制备了一种线性聚合物涂层毛细管。该涂层毛细管应用于小分子中性化合物的毛细管电色谱(CEC)分离。固定在毛细管表面的线性聚合物中的疏水基团在反相CEC分离中起固定相的作用,线性聚合物中的带电基团沿柱产生电渗流(EOF)。涂层毛细管通过简单的步骤制备。此外,关于EOF速率和溶质迁移时间的重现性非常好。本文展示了使用线性聚合物涂层毛细管进行小分子CEC分离的结果。