A Sol-Gel Derived Organic/Inorganic Hybrid Membrane for Intermediate Temperature PEFC

被引:1
|
作者
Honma, I. [1 ]
Nishikawa, O. [2 ]
Sugimoto, T. [2 ]
Nomura, S. [2 ]
Nakajima, H. [1 ]
机构
[1] Natl Inst Adv Ind Sci & Technol, Energy Elect Inst, Tsukuba, Ibaraki 3058568, Japan
[2] Sekisui Chem Co Ltd, Minase Res Inst, Osaka 6188589, Japan
关键词
Organic/Inorganic Hybrid; Proton Conducting Membrane; Intermediate Temperature PEFC; Polyether Polymers; Heteropolyacids; Sol-Gel Process; Silica/Polyethers Hybrid; 12-Phosphotungstic Acid (PWA);
D O I
10.1002/1615-6854(20020815)2:1<52::AID-FUCE52>3.0.CO;2-G
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Intermediate temperature operation of polymer electrolyte fuel cells has been pointed out to be a promising option to overcome most of the technological problems of the current PEM system and new classes of electrolyte membrane have been investigated elsewhere. Proton conducting organic/inorganic nano-hybrid polymer electrolyte membranes have been synthesized in the present work. The membranes were synthesized by bridging temperature tolerant polyether polymers such as PEO or PTMO to inorganic silicate moieties to form organic/inorganic hybrid macromolecules. The hybrid membranes become proton conducting polymer electrolytes by doping with heteropolyacids such as 12-phosphotungstic acid (PWA). The conducting properties of the membrane were studied by modifying the polyether structure, molecular weight, PWA concentration, water content, and also various processing conditions. The membranes are flexible and thermally stable due to the temperature tolerant inorganic frameworks of the macromolecules. The proton conductivity of the membranes is in a range from 10(-3)-10(-2) S/cm up to 140 degrees C under controlled humidity.
引用
下载
收藏
页码:52 / 58
页数:7
相关论文
共 50 条
  • [1] Sol-gel derived inorganic/organic hybrid separation membrane
    Zhang, GC
    Chen, YF
    Wu, ZJ
    Xie, YS
    CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2001, 22 (05): : 713 - 716
  • [2] Sol-gel Derived Inorganic/Organic Hybrid Separation Membrane
    Zhang, Guo-Chang
    Chen, Yun-Fa
    Wu, Zhen-Jiang
    Xie, Yu-Sheng
    Kao Teng Hsueh Hsiao Hua Heush Hsueh Pao/ Chemical Journal of Chinese Universities, 2001, 22 (05):
  • [3] Sol-gel derived hybrid inorganic-organic nanocomposites for optics
    Lebeau, B
    Sanchez, C
    CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCE, 1999, 4 (01): : 11 - 23
  • [4] Pyrolysis pathway of sol-gel derived organic/inorganic hybrid nanocomposites
    Ceccato, R
    Dirè, S
    Lutterotti, L
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2003, 322 (1-3) : 22 - 28
  • [5] Organic/inorganic hybrid sol-gel derived hard coatings on plastics
    Chan, CM
    Cao, GZ
    Fong, H
    Sarikaya, M
    Robinson, T
    Nelson, L
    ORGANIC/INORGANIC HYBRID MATERIALS II, 1999, 576 : 319 - 324
  • [6] Adsorptive properties of sol-gel derived hybrid organic/inorganic coatings
    Borovin, Evgeny
    Callone, Emanuela
    Ceccato, Riccardo
    Quaranta, Alberto
    Dire, Sandra
    MATERIALS CHEMISTRY AND PHYSICS, 2014, 147 (03) : 954 - 962
  • [7] Molecular Design of Sol-Gel Derived Hybrid Organic-Inorganic Nanocomposites
    C. Sanchez
    B. Lebeau
    F. Ribot
    M. In
    Journal of Sol-Gel Science and Technology, 2000, 19 : 31 - 38
  • [8] Molecular design of sol-gel derived hybrid organic-inorganic nanocomposites
    Sanchez, C
    Lebeau, B
    Ribot, F
    In, M
    JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 2000, 19 (1-3) : 31 - 38
  • [9] Sol-gel derived organic-inorganic hybrid materials for photonic applications
    Seddon, AB
    IEE PROCEEDINGS-CIRCUITS DEVICES AND SYSTEMS, 1998, 145 (05): : 369 - 372
  • [10] Molecular design of sol-gel derived hybrid organic-inorganic nanocomposites
    Sanchez, C.
    Lebeau, B.
    Ribot, F.
    In, M.
    2000, Kluwer Academic Publishers, Dordrecht, Netherlands (19) : 1 - 3