Enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways

© 2014 Elsevier B.V. Herein, a series of composite membranes based on sulfonated poly(ether ether ketone) (SPEEK) and imidazole-type ionic liquid (ImIL) are prepared through IL-swollen method as anhydrous electrolytes for fuel cell. The IL loading amount is accurately controlled by preparation condi...

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Main Authors: Zhang, H., Wu, W., Wang, J., Zhang, T., Shi, B., Liu, Jian, Cao, S.
Format: Journal Article
Published: Elsevier BV 2015
Online Access:http://hdl.handle.net/20.500.11937/73103
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author Zhang, H.
Wu, W.
Wang, J.
Zhang, T.
Shi, B.
Liu, Jian
Cao, S.
author_facet Zhang, H.
Wu, W.
Wang, J.
Zhang, T.
Shi, B.
Liu, Jian
Cao, S.
author_sort Zhang, H.
building Curtin Institutional Repository
collection Online Access
description © 2014 Elsevier B.V. Herein, a series of composite membranes based on sulfonated poly(ether ether ketone) (SPEEK) and imidazole-type ionic liquid (ImIL) are prepared through IL-swollen method as anhydrous electrolytes for fuel cell. The IL loading amount is accurately controlled by preparation conditions (e.g., ultrasonic power, treatment temperature, and treatment time). The influence of IL on physicochemical properties of composite membrane is systematically investigated. The IL is enriched into the ionic clusters of SPEEK matrix driven by electrostatic attractions, thereby broadening them to form inter-connected channels. IL provides anhydrous hoping sites and low-energy-barrier paths of imidazole-sulfonic acid pairs to composite membrane. Through the channels, these sites form facile pathways and significantly enhance the anhydrous conductivity of composite membrane. Particularly, the composite membrane containing 43% IL achieves a 52 times higher conductivity (9.3mScm-1) than that of the control membrane (0.179mScm-1) at 140°C. Increasing IL loading amount will further elevate the anhydrous conductivity. The dynamic IL release and the concomitant conductivity of composite membrane are investigated. Moreover, another team of composite membranes are prepared by solution casting method for exploring the influence of preparation method on the microstructure, IL retention ability, and conductivity of IL-incorporated membrane.
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publishDate 2015
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spelling curtin-20.500.11937-731032018-12-13T09:31:56Z Enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways Zhang, H. Wu, W. Wang, J. Zhang, T. Shi, B. Liu, Jian Cao, S. © 2014 Elsevier B.V. Herein, a series of composite membranes based on sulfonated poly(ether ether ketone) (SPEEK) and imidazole-type ionic liquid (ImIL) are prepared through IL-swollen method as anhydrous electrolytes for fuel cell. The IL loading amount is accurately controlled by preparation conditions (e.g., ultrasonic power, treatment temperature, and treatment time). The influence of IL on physicochemical properties of composite membrane is systematically investigated. The IL is enriched into the ionic clusters of SPEEK matrix driven by electrostatic attractions, thereby broadening them to form inter-connected channels. IL provides anhydrous hoping sites and low-energy-barrier paths of imidazole-sulfonic acid pairs to composite membrane. Through the channels, these sites form facile pathways and significantly enhance the anhydrous conductivity of composite membrane. Particularly, the composite membrane containing 43% IL achieves a 52 times higher conductivity (9.3mScm-1) than that of the control membrane (0.179mScm-1) at 140°C. Increasing IL loading amount will further elevate the anhydrous conductivity. The dynamic IL release and the concomitant conductivity of composite membrane are investigated. Moreover, another team of composite membranes are prepared by solution casting method for exploring the influence of preparation method on the microstructure, IL retention ability, and conductivity of IL-incorporated membrane. 2015 Journal Article http://hdl.handle.net/20.500.11937/73103 10.1016/j.memsci.2014.11.033 Elsevier BV restricted
spellingShingle Zhang, H.
Wu, W.
Wang, J.
Zhang, T.
Shi, B.
Liu, Jian
Cao, S.
Enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways
title Enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways
title_full Enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways
title_fullStr Enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways
title_full_unstemmed Enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways
title_short Enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways
title_sort enhanced anhydrous proton conductivity of polymer electrolyte membrane enabled by facile ionic liquid-based hoping pathways
url http://hdl.handle.net/20.500.11937/73103