A novel inorganic proton exchange membrane based on self-assembled HPW-meso-silica for direct methanol fuel cells

Direct methanol fuel cells (DMFCs) based on high-temperature (100-300 C) proton exchange membranes (HT-PEMs) offer significant advantages over the current low-temperature DMFCs based on perfluorosulfonic acid (e.g., Nafion), such as reduction in CO poisoning via faster reaction kinetics, thus increa...

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Main Authors: Lu, J., Tang, H., Lu, S., Wu, Hongwei, Jiang, San Ping
Format: Journal Article
Published: The Royal Society of Chemistry 2011
Online Access:http://hdl.handle.net/20.500.11937/5265
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author Lu, J.
Tang, H.
Lu, S.
Wu, Hongwei
Jiang, San Ping
author_facet Lu, J.
Tang, H.
Lu, S.
Wu, Hongwei
Jiang, San Ping
author_sort Lu, J.
building Curtin Institutional Repository
collection Online Access
description Direct methanol fuel cells (DMFCs) based on high-temperature (100-300 C) proton exchange membranes (HT-PEMs) offer significant advantages over the current low-temperature DMFCs based on perfluorosulfonic acid (e.g., Nafion), such as reduction in CO poisoning via faster reaction kinetics, thus increasing the energy efficiency and reducing precious metal loading. This paper reports a novel inorganic proton exchange membrane based on 12-tungstophosphoric acid mesoporous silica (HPW-meso-silica) nanocomposites. The HPW-meso-silica was synthesized via a one-step selfassembly route assisted by a triblock copolymer, Pluronic P123, as the structure-directing surfactant. The threshold of the HPW content in the nanocomposites for the conductivity of mesoporous silica is 5 wt%. The best results were obtained at 25 wt% HPW-meso-silica, delivering a high proton conductivity of 0.091 S cm1 at 100 C under 100% relative humidity (RH) and 0.034 S cm1 at 200 C under 3% RH and a low activation energy of 14.0 kJ mol1. The maximum power density of a cell with a 25 wt% HPW-meso-silica membrane is 19 mW cm2 at 25 C and increased to 235 mW cm2 at 150 C in methanol fuel.
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institution Curtin University Malaysia
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last_indexed 2025-11-14T06:06:24Z
publishDate 2011
publisher The Royal Society of Chemistry
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spelling curtin-20.500.11937-52652017-09-13T15:54:29Z A novel inorganic proton exchange membrane based on self-assembled HPW-meso-silica for direct methanol fuel cells Lu, J. Tang, H. Lu, S. Wu, Hongwei Jiang, San Ping Direct methanol fuel cells (DMFCs) based on high-temperature (100-300 C) proton exchange membranes (HT-PEMs) offer significant advantages over the current low-temperature DMFCs based on perfluorosulfonic acid (e.g., Nafion), such as reduction in CO poisoning via faster reaction kinetics, thus increasing the energy efficiency and reducing precious metal loading. This paper reports a novel inorganic proton exchange membrane based on 12-tungstophosphoric acid mesoporous silica (HPW-meso-silica) nanocomposites. The HPW-meso-silica was synthesized via a one-step selfassembly route assisted by a triblock copolymer, Pluronic P123, as the structure-directing surfactant. The threshold of the HPW content in the nanocomposites for the conductivity of mesoporous silica is 5 wt%. The best results were obtained at 25 wt% HPW-meso-silica, delivering a high proton conductivity of 0.091 S cm1 at 100 C under 100% relative humidity (RH) and 0.034 S cm1 at 200 C under 3% RH and a low activation energy of 14.0 kJ mol1. The maximum power density of a cell with a 25 wt% HPW-meso-silica membrane is 19 mW cm2 at 25 C and increased to 235 mW cm2 at 150 C in methanol fuel. 2011 Journal Article http://hdl.handle.net/20.500.11937/5265 10.1039/c0jm03695a The Royal Society of Chemistry restricted
spellingShingle Lu, J.
Tang, H.
Lu, S.
Wu, Hongwei
Jiang, San Ping
A novel inorganic proton exchange membrane based on self-assembled HPW-meso-silica for direct methanol fuel cells
title A novel inorganic proton exchange membrane based on self-assembled HPW-meso-silica for direct methanol fuel cells
title_full A novel inorganic proton exchange membrane based on self-assembled HPW-meso-silica for direct methanol fuel cells
title_fullStr A novel inorganic proton exchange membrane based on self-assembled HPW-meso-silica for direct methanol fuel cells
title_full_unstemmed A novel inorganic proton exchange membrane based on self-assembled HPW-meso-silica for direct methanol fuel cells
title_short A novel inorganic proton exchange membrane based on self-assembled HPW-meso-silica for direct methanol fuel cells
title_sort novel inorganic proton exchange membrane based on self-assembled hpw-meso-silica for direct methanol fuel cells
url http://hdl.handle.net/20.500.11937/5265