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非水溶剂中毛细管区带电泳的迁移和扩散原理。

The principles of migration and dispersion in capillary zone electrophoresis in nonaqueous solvents.

作者信息

Porras Simo P, Riekkola Marja-Liisa, Kenndler Ernst

机构信息

Institute for Analytical Chemistry, University of Vienna, Vienna, Austria.

出版信息

Electrophoresis. 2003 May;24(10):1485-98. doi: 10.1002/elps.200305373.

Abstract

Nonaqueous solvents are interesting media for capillary zone electrophoresis as they can affect all relevant parameters governing the separation of sample zones. However, for a rational planning of the working conditions and an appropriate interpretation of the results obtained, the basic principles of ion migration and zone dispersion must be understood. Many solvent induced effects need to be carefully considered and recognized before full exploitation of nonaqueous solvents can take place. It is the goal of this overview to present the fundamental physicochemical aspects of capillary zone electrophoresis in nonaqueous solvent systems. Therefore, the detailed discussion is related to the effect of organic solvents on electrophoretic mobilities (based on the theory of conductance), acid-base dissociation behavior (based on the transfer activity coefficient and medium effect), pH, separation efficiency (with regard to mobility and diffusion coefficient in dilute solutions), resolution, and electroosmotic flow.

摘要

非水溶剂是毛细管区带电泳中有趣的介质,因为它们会影响控制样品区分离的所有相关参数。然而,为了合理规划工作条件并对所得结果进行适当解释,必须理解离子迁移和区带分散的基本原理。在充分利用非水溶剂之前,许多溶剂诱导效应需要仔细考虑和认识。本综述的目的是介绍非水溶剂体系中毛细管区带电泳的基本物理化学方面。因此,详细讨论涉及有机溶剂对电泳迁移率(基于电导理论)、酸碱解离行为(基于转移活度系数和介质效应)、pH值、分离效率(关于稀溶液中的迁移率和扩散系数)、分辨率和电渗流的影响。

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