Electrotransport Properties of Perfluorinated Cation-Exchange Membranes of Various Thickness

Author:

Falina Irina1,Loza Natalia1ORCID,Brovkina Marina1ORCID,Titskaya Ekaterina1,Timofeev Sergey2,Kononenko Natalia1

Affiliation:

1. Physical Chemistry Department, Faculty of Chemistry and High Technologies, Kuban State University, 350040 Krasnodar, Russia

2. JSC Plastpolymer, 195197 Saint Petersburg, Russia

Abstract

The present work discusses the influence of the thickness of MF-4SK perfluorinated sulfonic cation-exchange membranes on their electrotransport properties in hydrochloric acid solutions. It is found that diffusion permeability and conductivity are primarily determined with the specific water content of the membranes and increase with their increase. Analysis of the contribution of reverse diffusion through the membrane to the value of the limiting current shows that it can reach 20% for membranes with a thickness of 60 μm. A study of the characteristics of the fuel cell with perfluorinated membranes of different thicknesses shows that the membrane thickness affects both the ohmic resistance of the membrane-electrode assembly and the diffusion limitations of proton transport in polymer electrolytes.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

Filtration and Separation,Chemical Engineering (miscellaneous),Process Chemistry and Technology

Reference31 articles.

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