Transport properties of proton exchange membranes

Abhishek Roy, Michael A. Hickner, Hae Seung Lee, Anand Badami, Xiang Yu, Yanxiang Li, Tom Glass, James E. McGrath

Research output: Chapter in Book/Report/Conference proceedingConference contribution

10 Scopus citations

Abstract

Disulfonated poly(arylene ether sulfone) random copolymers have shown promise as potential candidates for proton exchange membranes. The chemical structure of these copolymers has served as a basis for the molecular design of new random and multiblock copolymers. In random copolymers the sulfonic acid is distributed statistically, while in the multiblock copolymers the chemical structure is designed to have co continuous hydrophilic and hydrophobic domains. The effect of these variables on the transport properties of the membranes was investigated. For the random copolymers, high proton conductivity was observed at higher IEC along with high methanol permeability. But for the multiblock copolymers, it was possible to combine high proton conductivity with low methanol permeability. Improved proton conductivity was observed under partially hydrated conditions for samples with higher block lengths. Self diffusion coefficient of water was also measured by NMR which provided better understanding of the transport process. copyright The Electrochemical Society.

Original languageEnglish (US)
Title of host publicationDirect Methanol Fuel Cells
Pages45-54
Number of pages10
Edition24
DOIs
StatePublished - Dec 1 2007
Event209th ECS Meeting - Denver, CO, United States
Duration: May 7 2006May 12 2006

Publication series

NameECS Transactions
Number24
Volume2
ISSN (Print)1938-5862
ISSN (Electronic)1938-6737

Other

Other209th ECS Meeting
CountryUnited States
CityDenver, CO
Period5/7/065/12/06

All Science Journal Classification (ASJC) codes

  • Engineering(all)

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  • Cite this

    Roy, A., Hickner, M. A., Lee, H. S., Badami, A., Yu, X., Li, Y., Glass, T., & McGrath, J. E. (2007). Transport properties of proton exchange membranes. In Direct Methanol Fuel Cells (24 ed., pp. 45-54). (ECS Transactions; Vol. 2, No. 24). https://doi.org/10.1149/1.2424313