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Designing the next generation of proton-exchange membrane fuel cells
by
Brandon, Nigel P.
, Hou, Zhongjun
, Fan, Linhao
, Wang, Bowen
, Guiver, Michael D.
, Xuan, Jin
, Wang, Huizhi
, Du, Qing
, Xie, Biao
, Yin, Yan
, Bao, Zhiming
, Huo, Sen
, Jiao, Kui
, Zhao, Yan
in
121/135
/ 121/143
/ 136/117
/ 140/146
/ 639/301/299/886
/ 639/301/299/893
/ 639/4077/893
/ Carbon
/ Clean energy
/ Commercialization
/ Electrodes
/ Energy storage
/ Fuel cells
/ Fuel technology
/ Gases
/ Humanities and Social Sciences
/ Hydrogen
/ Industrial applications
/ multidisciplinary
/ Perspective
/ Proton exchange membrane fuel cells
/ Protons
/ Science
/ Science (multidisciplinary)
/ Thermal management
2021
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Designing the next generation of proton-exchange membrane fuel cells
by
Brandon, Nigel P.
, Hou, Zhongjun
, Fan, Linhao
, Wang, Bowen
, Guiver, Michael D.
, Xuan, Jin
, Wang, Huizhi
, Du, Qing
, Xie, Biao
, Yin, Yan
, Bao, Zhiming
, Huo, Sen
, Jiao, Kui
, Zhao, Yan
in
121/135
/ 121/143
/ 136/117
/ 140/146
/ 639/301/299/886
/ 639/301/299/893
/ 639/4077/893
/ Carbon
/ Clean energy
/ Commercialization
/ Electrodes
/ Energy storage
/ Fuel cells
/ Fuel technology
/ Gases
/ Humanities and Social Sciences
/ Hydrogen
/ Industrial applications
/ multidisciplinary
/ Perspective
/ Proton exchange membrane fuel cells
/ Protons
/ Science
/ Science (multidisciplinary)
/ Thermal management
2021
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Do you wish to request the book?
Designing the next generation of proton-exchange membrane fuel cells
by
Brandon, Nigel P.
, Hou, Zhongjun
, Fan, Linhao
, Wang, Bowen
, Guiver, Michael D.
, Xuan, Jin
, Wang, Huizhi
, Du, Qing
, Xie, Biao
, Yin, Yan
, Bao, Zhiming
, Huo, Sen
, Jiao, Kui
, Zhao, Yan
in
121/135
/ 121/143
/ 136/117
/ 140/146
/ 639/301/299/886
/ 639/301/299/893
/ 639/4077/893
/ Carbon
/ Clean energy
/ Commercialization
/ Electrodes
/ Energy storage
/ Fuel cells
/ Fuel technology
/ Gases
/ Humanities and Social Sciences
/ Hydrogen
/ Industrial applications
/ multidisciplinary
/ Perspective
/ Proton exchange membrane fuel cells
/ Protons
/ Science
/ Science (multidisciplinary)
/ Thermal management
2021
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Designing the next generation of proton-exchange membrane fuel cells
Journal Article
Designing the next generation of proton-exchange membrane fuel cells
2021
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Overview
With the rapid growth and development of proton-exchange membrane fuel cell (PEMFC) technology, there has been increasing demand for clean and sustainable global energy applications. Of the many device-level and infrastructure challenges that need to be overcome before wide commercialization can be realized, one of the most critical ones is increasing the PEMFC power density, and ambitious goals have been proposed globally. For example, the short- and long-term power density goals of Japan’s New Energy and Industrial Technology Development Organization are 6 kilowatts per litre by 2030 and 9 kilowatts per litre by 2040, respectively. To this end, here we propose technical development directions for next-generation high-power-density PEMFCs. We present the latest ideas for improvements in the membrane electrode assembly and its components with regard to water and thermal management and materials. These concepts are expected to be implemented in next-generation PEMFCs to achieve high power density.
This Perspective reviews the recent technical developments in the components of the fuel cell stack in proton-exchange membrane fuel cell vehicles and outlines the road towards large-scale commercialization of such vehicles.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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