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传统的质子交换膜燃料电池在高温下工作时,质子膜会因温度升高而发生脱水和膜电阻升高的现象,这对提高燃料电池的工作性能是一个致命的阻碍.由于Nafion(R)/SiO2复合膜具有较好的吸水和保水性能和较好的阻止甲醇渗透的能力,人们通过溶胶-凝胶法或重铸法合成了Nafion(R)/SiO2复合膜,并于高温(80~140℃)下应用在质子交换膜燃料电池和直接甲醇燃料电池中.简单介绍了Nafion(R)/SiO2复合膜的制备方法、结构性能及研究情况,并分析了存在的问题和其广阔的应用前景.

参考文献

[1] Shigeyuki Kawatsu .Advanced PEFC development for fuel cell powered vehicles[J].Journal of Power Sources,1998,71:150-155.
[2] CLEGHON S J C;Ren X;Springer T E et al.PEM fuel cell for transporation and stationary power generation application[J].Journal of Hydrogen Energy,1997,22(12):1137-1144.
[3] 陈延禧 .聚合物电解质燃料电池的研究进展[J].电源技术,1996,20(01):21-27.
[4] Houblod H G .Nanostructure of Nafion:A SAXS study[J].Electrochimica Acta,2001,46:1559-1563.
[5] Mauritz K A;Stefanithis I D.Mircostructural evolution of a silicon oxide phase in a perfluorosulfonic acid ionomer by an in situ sol - gel reaction (2) Dielectric relaxation studies[J].Macromolecules,1990:1380-1388.
[6] Mauritz K A;Warren M.Mircostructural evolution of a silicon oxide phase in a perfluorosulfonic acid ionomer by an in situ sol - gel reaction ( 1 ) Infrared spectroscopic studies[J].Macromolecules,1989:1730-1734.
[7] Kenneth A. Mauritz .Organic-inorganic hybrid materials: perfluorinated ionomers as sol-gel polymerization templates for inorganic alkoxides[J].Materials science & engineering, C. Biomimetic and supramolecular systems,1998(2/3):121-133.
[8] Mauritz KA.;Davis SV.;Scheetz RW.;Pope RK.;Wilkes GL. Huang HH.;Stefanithis ID. .MICROSTRUCTURAL EVOLUTION OF A SILICON OXIDE PHASE IN A PERFLUOROSULFONIC ACID IONOMER BY AN INSITU SOL GEL REACTION[J].Journal of Applied Polymer Science,1995(1):181-190.
[9] Young SK.;Jarrett WL.;Mauritz KA. .Nafion (R)/ORMOSIL nanocomposites via polymer-in situ sol-gel reactions. 1. Probe of ORMOSIL phase nanostructures by Si-29 solid-state NMR spectroscopy[J].Polymer: The International Journal for the Science and Technology of Polymers,2002(8):2311-2320.
[10] Antonucci P.L.;Creti P.;Ramunni E.;Antonucci V.;Arico A.S. .Investigation of a direct methanol fuel cell based on a composite Nafion-silica electrolyte for high temperature operation[J].Solid state ionics,1999(1/4):431-437.
[11] Arico A;Antonucci V .Polymeric membrane electrochemical cell operating at temperatures above 100 ℃[P].EP 0926754,1999-06-30.
[12] Stonehart P .Polymer solid- electrolyte composition and electrochemical cell using the composition[P].US Pat:US 5523181,1996-06-04.
[13] MASAHIRO WATANABE;Hiroyuki Uchido;Yasuhiro Seki et al.Self - humidifying polymer electrolyte membranes for fuel cells[J].Journal of the Electrochemical Society,1996,143(02):3847-3852.
[14] ADJEMIAN K T;Lee S J;Srinivasan S et al.Silicon oxide Nafion composite membranes for proton- exchange membrane fuel cell operation at 80~ 140 ℃[J].Journal of the Electrochemical Society,2002,149(03):A256-A261.
[15] ADJEMIAN K T;Mark A;Sun Q .Sol- gel derived porous microcomposite of perfluorinated ion - exchange polymer and metal oxide[P].US Pat:US 6515190,2000-09-27.
[16] Zoppi R A;YoshidaI V P;Nunes S P .Hybirds of perfilorosulfonic acid ionomer and silicon oxide by sol - gel reaction from solution:Morphology and thermal analysis[J].Polymer,1997,39(6-7):1309-1315.
[17] Cho S Y;Peck D H.Performance evaluation of a Nafion/silicon oxide hybrid membrane for direct methanol fuel cell[J].Journal of Power Sources,2002(106):173-177.
[18] Miyake N;Wainright J S;Savinell R F .Evaluation of a sol - gel derived nafion/silicon hybrid membrane for polymer electrolyte membrane fuel cell appalication ( Ⅱ )Methanol uptake and methanol permeability[J].Journal of the Electrochemical Society,2001,148(08):A905-A909.
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