Reduction of Methanol Crossover in a Direct Methanol Fuel Cell by Using the Pt-Coated Electrolyte Membrane

被引:1
|
作者
Jung, Eun-Mi [1 ]
Rhee, Young-Woo [2 ]
Peck, Dong-Hyun [1 ]
Lee, Byoung-Rok [1 ]
Kim, Sang-Kyung [1 ]
Jung, Doohwan [1 ]
机构
[1] Korea Inst Energy Res, Adv Fuel Cell Res Ctr, 71-2 Jang Dong, Daejeon 305343, South Korea
[2] Chungnam Natl Univ, Dept Chem Engn, Daejeon 305764, South Korea
来源
关键词
Direct methanol fuel cell; Modification of the membrane; Pt-sputtered membrane; Methanol crossover;
D O I
10.5229/JKES.2008.11.1.001
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
A Pt-layer was deposited on the anode side of a Nafion membrane via a sputtering method in order to reduce methanol crossover in a direct methanol fuel cell (DMFC). The methanol permeationand the proton conductivity through the modified membranes were investigated. The performances of the direct methanol fuel cell were also tested using single cells with a Nafion membrane and the modified membranes. The Pt-layers on the membrane blocked both methanol crossover and proton transport through the membranes. Methanol permeability and proton conductivity decreased with an increase of the platinum layer thickness. At methanol concentration of 2 M, the DMFC employing the modified membrane with a platinum layer of 66 nm-thickness showed similar performance to that of a DMFC with a bare Nafion membrane in spite of the lower proton conductivity of the former. The maximum power density of the cell using the modified membrane with a platinum layer of 66 rim-thickness increased slightly while that of the cell with the bare membrane decreased abruptly when a methanol solution of 6 M was supplied.
引用
收藏
页码:1 / 5
页数:5
相关论文
共 50 条
  • [41] Quantification of Methanol Concentration in the Polymer Electrolyte Membrane of Direct Methanol Fuel Cell by Solid-state NMR
    Kim, Seong-Soo
    Paik, Younkee
    Kim, Sun Ha
    Han, Oc Hee
    JOURNAL OF THE KOREAN MAGNETIC RESONANCE SOCIETY, 2008, 12 (02): : 96 - 102
  • [42] Improvement of polymer electrolyte membranes for polymer electrolyte membrane and direct methanol fuel cell applications
    Qiao, L
    Agoumba, D
    Waterfeld, A
    Thrasher, JS
    POWER SOURCES FOR THE NEW MILLENNIUM, PROCEEDINGS, 2001, 2000 (22): : 92 - 102
  • [43] Performance of a direct methanol polymer electrolyte fuel cell
    Jung, DH
    Lee, CH
    Kim, CS
    Shin, DR
    JOURNAL OF POWER SOURCES, 1998, 71 (1-2) : 169 - 173
  • [44] Grafted polymer electrolyte membrane for direct methanol fuel cells
    Shen, M
    Roy, S
    Kuhlmann, JW
    Scott, K
    Lovell, K
    Horsfall, JA
    JOURNAL OF MEMBRANE SCIENCE, 2005, 251 (1-2) : 121 - 130
  • [45] A potentiometric method of monitoring methanol crossover through polymer electrolyte membranes of direct methanol fuel cells
    Munichandraiah, N
    McGrath, K
    Prakash, GKS
    Aniszfeld, R
    Olah, GA
    JOURNAL OF POWER SOURCES, 2003, 117 (1-2) : 98 - 101
  • [46] Chitosan/titanate Nanotube Hybrid Membrane with Low Methanol Crossover for Direct Methanol Fuel Cells
    Geng, Jiaqing
    Jiang, Zhongyi
    Wang, Jingtao
    Shi, Ying
    Yang, Dong
    Xiao, Lulu
    CHEMICAL ENGINEERING & TECHNOLOGY, 2010, 33 (02) : 244 - 250
  • [47] Recent investigations of the methanol crossover in direct methanol fuel cells
    Cheng, P
    Xuan, C
    Ying, Z
    Ling, C
    Fan, QB
    RARE METAL MATERIALS AND ENGINEERING, 2004, 33 (06) : 571 - 575
  • [48] CO2 crossover through a Nafion membrane in a direct methanol fuel cell
    Jiang, RZ
    Chu, DR
    ELECTROCHEMICAL AND SOLID STATE LETTERS, 2002, 5 (07) : A156 - A159
  • [49] Nanofluidic analysis on methanol crossover of direct methanol fuel cells
    Chen, Peng-Yu
    Chen, Wei-Hui
    Hong, Che-Wun
    PROCEEDINGS OF THE MICRO/NANOSCALE HEAT TRANSFER INTERNATIONAL CONFERENCE 2008, PTS A AND B, 2008, : 131 - 132
  • [50] Methanol and water crossover in a passive liquid-feed direct methanol fuel cell
    Xu, Chao
    Faghri, Amir
    Li, Xianglin
    Ward, Travis
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (04) : 1769 - 1777