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通过膜电位分析对不同材料和结构的带电膜进行电化学表征。

Electrochemical Characterization of Charged Membranes from Different Materials and Structures via Membrane Potential Analysis.

作者信息

Romero Virginia, Gelde Lourdes, Benavente Juana

机构信息

Departamento de Física Aplicada I, Facultad de Ciencia, Universidad de Málaga, 29071 Málaga, Spain.

出版信息

Membranes (Basel). 2023 Aug 17;13(8):739. doi: 10.3390/membranes13080739.

Abstract

Electrochemical characterization of positively and negatively charged membranes is performed by analyzing membrane potential values on the basis of the Teorell-Meyer-Sievers (TMS) model. This analysis allows the separate estimation of Donnan (interfacial effects) and diffusion (differences in ions transport through the membrane) contributions, and it permits the evaluation of the membrane's effective fixed charge concentration and the transport number of the ions in the membrane. Typical ion-exchange commercial membranes (AMX, Ionics or Nafion) are analyzed, though other experimental and commercial membranes, which are derived from different materials and have diverse structures (dense, swollen or nanoporous structures), are also considered. Moreover, for some membranes, changes associated with different modifications and other effects (concentration gradient or level, solution stirring, etc.) are also analyzed.

摘要

基于特奥雷尔 - 迈耶 - 西弗斯(TMS)模型,通过分析膜电位值对带正电和带负电的膜进行电化学表征。该分析允许分别估算唐南(界面效应)和扩散(离子通过膜的传输差异)贡献,并且可以评估膜的有效固定电荷浓度和膜中离子的迁移数。分析了典型的离子交换商业膜(AMX、Ionics或Nafion),不过也考虑了其他来自不同材料且具有不同结构(致密、溶胀或纳米多孔结构)的实验膜和商业膜。此外,对于一些膜,还分析了与不同改性以及其他效应(浓度梯度或水平、溶液搅拌等)相关的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8ec/10456455/59e3cc635751/membranes-13-00739-g001.jpg

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