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用于毛细管电泳的通过溶胶-凝胶法在毛细管表面制备的电渗流可控涂层。

Electroosmotic flow controllable coating on a capillary surface by a sol-gel process for capillary electrophoresis.

作者信息

Hsieh Yi-Yun, Lin Ya-Hsien, Yang Jr-Shiung, Wei Guor-Tzo, Tien Pei, Chau Lai-Kwan

机构信息

Department of Chemistry, National Chung Cheng University, Ming-Hsiung, Chia-Yi, Taiwan.

出版信息

J Chromatogr A. 2002 Apr 5;952(1-2):255-66. doi: 10.1016/s0021-9673(02)00079-1.

Abstract

A simple coating procedure employing a sol-gel process to modify the inner surface of a bare fused-silica capillary with a positively charged quaternary ammonium group is established. Scanning electron microscopic studies reveal that a smooth coating with 1 to approximately 2 microm thickness can be obtained at optimized coating conditions. With 40 mM citrate as a running electrolyte, the plot of electroosmotic flow (EOF) versus pH shows a unique three-stage EOF pattern from negative to zero and then to positive over a pH range of 2.5 to 7.0. At pH above 5.5, the direction of the EOF is from the anode to the cathode, as is the case in a bare fused-silica capillary, and the electroosmotic mobility increases as the pH increases. However, the direction of the EOF is reversed at pH below 4.0. Over the pH range of 4.0 to 5.5, zero electroosmotic mobility is obtained. Such a three-stage EOF pattern has been used to separate six aromatic acids under suppressed EOF and to separate nitrate and nitrite with the anions migrating in the same direction as the EOF. The positively charged quaternary ammonium group on the coating was also utilized to minimize the adsorption problem during the separation of five basic drugs under suppressed EOF and during the separation of four basic proteins with the cations migrate in the opposite direction as the EOF. Also, the stability and reproducibility of this column are good.

摘要

建立了一种简单的涂覆方法,该方法采用溶胶-凝胶工艺,用带正电荷的季铵基团修饰裸熔融石英毛细管的内表面。扫描电子显微镜研究表明,在优化的涂覆条件下,可以获得厚度为1至约2微米的光滑涂层。以40 mM柠檬酸盐作为运行电解质,电渗流(EOF)与pH的关系图在2.5至7.0的pH范围内呈现出独特的三阶段EOF模式,从负到零,然后到正。在pH高于5.5时,EOF的方向与裸熔融石英毛细管中的情况一样,是从阳极到阴极,并且电渗迁移率随pH的增加而增加。然而,在pH低于4.0时,EOF的方向会反转。在4.0至5.5的pH范围内,获得零电渗迁移率。这种三阶段EOF模式已被用于在抑制EOF的情况下分离六种芳香酸,以及分离硝酸盐和亚硝酸盐,此时阴离子与EOF同向迁移。涂层上带正电荷的季铵基团还被用于在抑制EOF的情况下分离五种碱性药物以及在阳离子与EOF反向迁移的情况下分离四种碱性蛋白质时,尽量减少吸附问题。此外,该柱的稳定性和重现性良好。

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