Electrical properties of bipolar plate and gas diffusion layer in PEFC
被引:11
作者:
Miyazawa, Atsushi
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Tokyo Inst Technol, Dept Chem & Mat Sci, Meguro Ku, Tokyo 1528552, Japan
Nissan Motor Co Ltd, Nissan Res Ctr, Yokosuka, Kanagawa 2378523, JapanTokyo Inst Technol, Dept Chem & Mat Sci, Meguro Ku, Tokyo 1528552, Japan
Miyazawa, Atsushi
[1
,2
]
Himeno, Tomokatsu
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Nissan Motor Co Ltd, Nissan Res Ctr, Yokosuka, Kanagawa 2378523, JapanTokyo Inst Technol, Dept Chem & Mat Sci, Meguro Ku, Tokyo 1528552, Japan
Himeno, Tomokatsu
[2
]
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Nishikata, Atsushi
[1
]
机构:
[1] Tokyo Inst Technol, Dept Chem & Mat Sci, Meguro Ku, Tokyo 1528552, Japan
[2] Nissan Motor Co Ltd, Nissan Res Ctr, Yokosuka, Kanagawa 2378523, Japan
This study investigated the electrical properties of the gas diffusion layer (GDL) and the bipolar plates that are key components of a polymer electrolyte fuel cell (PEFC). Observations of the contact condition between the GDL and a bipolar plate under compression showed no noticeable increase in contact area with increasing compression pressure above a level of 0.8 MPa. Contact resistance between the GDL and an Au-coated bipolar plate decreased with increasing Au coverage. However, the decrease in contact resistance relative to Au coverage was small, less than 1 m Omega cm(2), at coverage of approximately 0.6 or higher. That is presumably attributable to the flow of electrons to the Au contact spot with little voltage loss in the in-plane direction of the GDL One reason for that is the fact that sufficient contact with the GDL was secured, as indicated by the observation results. Additionally, the in-plane resistance of the GDL was markedly smaller than the contact resistance. The change in contact resistance relative to Au coverage was calculated for GDLs having different in-plane resistivities. The results revealed that the increase in contact resistance relative to Au coverage became smaller as the resistivity of the GDL decreased. (C) 2012 Elsevier B.V. All rights reserved.
机构:
Arizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
Lin, J. F.
Wertz, J.
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机构:
Hollingsworth & Vose Co, AK Nicholson Res Lab, W Groton, MA 01472 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
Wertz, J.
Ahmad, R.
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机构:
Quantachrome Instruments, Boynton Beach, FL 33426 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
Ahmad, R.
Thommes, M.
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Quantachrome Instruments, Boynton Beach, FL 33426 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
Thommes, M.
Kannan, A. M.
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机构:
Arizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
机构:
Arizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
Lin, J. F.
Wertz, J.
论文数: 0引用数: 0
h-index: 0
机构:
Hollingsworth & Vose Co, AK Nicholson Res Lab, W Groton, MA 01472 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
Wertz, J.
Ahmad, R.
论文数: 0引用数: 0
h-index: 0
机构:
Quantachrome Instruments, Boynton Beach, FL 33426 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
Ahmad, R.
Thommes, M.
论文数: 0引用数: 0
h-index: 0
机构:
Quantachrome Instruments, Boynton Beach, FL 33426 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA
Thommes, M.
Kannan, A. M.
论文数: 0引用数: 0
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机构:
Arizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USAArizona State Univ, Engn Technol Dept, Fuel Cell Res Lab, Mesa, AZ 85212 USA