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A new class of highly-conducting polymer electrolyte membranes: Aromatic ABA triblock copolymers
Journal article   Peer reviewed

A new class of highly-conducting polymer electrolyte membranes: Aromatic ABA triblock copolymers

Nanwen Li, So Young Lee, Ying-Ling Liu, Young Moo Lee and Michael D. Guiver
Energy and Environmental Science, Vol.5(1), pp.5346-5355
01/2012

Abstract

Highly proton-conducting polymer electrolyte membrane (PEMs) materials are presented as alternatives to state-of-the-art perfluorinated polymers such as Nafion ® . To achieve stable PEMs with efficient ionic nanochannels, novel fully aromatic ABA triblock copolymers (SP3O-b-PAES-b-SP3O) based on sulfonated poly(2,6-diphenyl-1,4-phenylene oxide)s (A, SP3O) and poly(arylene ether sulfone)s (B, PAES) were synthesized. This molecular design for a PEM was implemented to promote the nanophase separation between the hydrophobic polymer chain and hydrophilic ionic groups, and thus to form well-connected hydrophilic nanochannels that are responsible for the water uptake and proton conduction. Relative to other hydrocarbon-based PEMs, the triblock copolymer membranes showed a dramatic enhancement in proton conductivity under partially hydrated conditions, and superior thermal, oxidative and hydrolytic stabilities, suggesting that they have the potential to be utilized as alternative materials in applications operating under partly hydrated environments. © 2011 The Royal Society of Chemistry.

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