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Permeability and Conductivity Studies on Ionomer-Polysilsesquioxane Hybrid Materials

✍ Scribed by Chedarampet S. Karthikeyan; Suzana P. Nunes; Karl Schulte


Book ID
102488094
Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
138 KB
Volume
207
Category
Article
ISSN
1022-1352

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✦ Synopsis


Abstract

Summary: Hybrid materials based on sulphonated poly(ether ether ketone) (SPEEK, ionomer) and (RSiO~1.5~)~n~ network (polysilsequioxane) were prepared by sol‐gel process. Two different precursors namely aminopropyl trimethoxysilane (APTMS) and imidazoleglycidoxypropyl trimethoxysilane (IGPTMS) were utilized to generate (RSiO~1.5~)~n~ in SPEEK matrix by sol‐gel process. ^29^Si MAS NMR confirmed the formation of RSiO~3/2~ network structure inside the matrix. Characterisation of the hybrid materials showed lower methanol and water permeability compared to the plain SPEEK. They are therefore promising materials as membranes for direct methanol fuel cells applications. The hybrid material derived from amino group was more effective in decreasing the permeability than the material derived from imidazole group. However, the proton conductivity of the latter was higher than the material derived from amino group. The results indicate that hybrid material prepared from imidazole containing silane is more suitable as a membrane for direct methanol fuel cell than the one prepared from amino carrying silane because it fulfils the two main requirements, namely low methanol permeability and reasonably good proton conductivity.

Figure shows a network of silica phase in SPEEK matrix.

magnified imageFigure shows a network of silica phase in SPEEK matrix.


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Annealing effect of perfluorosulfonated
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## Abstract Perfluorosulfonated ionomer (PFSI) was synthesized and PFSI membranes were prepared via a solution‐cast method and annealed at different temperatures from 150 to 230Β°C. The annealing effect on water content, proton conductivity, and methanol permeability were reported and discussed. X‐r