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从多孔或无孔二氧化硅接枝的分子印迹聚合物膜:毛细管电色谱中的新型亲和固定相。

Molecularly imprinted polymer films grafted from porous or nonporous silica: novel affinity stationary phases in capillary electrochromatography.

作者信息

Quaglia Milena, De Lorenzi Ersilia, Sulitzky Claudia, Caccialanza Gabriele, Sellergren Börje

机构信息

Department of Pharmaceutical Chemistry, University of Pavia, Pavia, Italy.

出版信息

Electrophoresis. 2003 Mar;24(6):952-7. doi: 10.1002/elps.200390138.

Abstract

Molecularly imprinted composite materials were evaluated as chiral stationary phases in capillary electrochromatography (CEC). These consisted of spherical silica particles of different sizes and of different porosities, containing a surface-immobilized layer of molecularly imprinted polymer (MIP) targeted to bind L-phenylalanine anilide. Fused silica capillaries were packed over a length of 8.5 cm, using a pneumate amplification pump, and the stationary phase thus obtained was tested with respect to its electrochromatographic performance. The electroendosmotic flow (EOF) mobility was evaluated with respect to the content of grafted polymer, as well as the ionic strength and the acetonitrile content of the electrolyte. Moreover, the influence of the layer thickness and of the stationary phase porosity on the performance and on the sample load capacity was investigated. The packings exhibited different relative efficiencies for the two enantiomers. The results were discussed in terms of differencies in accessibility to the binding sites of the packings and of the mechanism of EOF generation. In the wide context of the different approaches so far proposed for MIP stationary phases in CEC, these materials can be a good alternative, worthy of further development and application, not restricted to chiral separations.

摘要

分子印迹复合材料被评估用作毛细管电色谱(CEC)中的手性固定相。这些材料由不同尺寸和不同孔隙率的球形二氧化硅颗粒组成,含有一层表面固定的分子印迹聚合物(MIP),目标是结合L-苯丙氨酸苯胺。使用气动放大泵将熔融石英毛细管填充8.5厘米长,并对由此获得的固定相的电色谱性能进行测试。针对接枝聚合物的含量、电解质的离子强度和乙腈含量评估电渗流(EOF)迁移率。此外,研究了层厚度和固定相孔隙率对性能和样品负载能力的影响。填充物对两种对映体表现出不同的相对效率。根据填充物结合位点的可及性差异和EOF产生机制对结果进行了讨论。在迄今为止为CEC中的MIP固定相提出的不同方法的广泛背景下,这些材料可以是一个很好的选择,值得进一步开发和应用,不仅限于手性分离。

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