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Nafion/Silicon Oxide Composite Membrane for High Temperature Proton Exchange Membrane Fuel Cell

Nafion/Silicon Oxide Composite Membrane for High Temperature Proton Exchange Membrane Fuel Cell
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摘要 Nafion/Silicon oxide composite membranes were produced via in situ sol-gel reaction of tetraethylorthosilicate (TEOS) in Nafion membranes. The physicochemical properties of the membranes were studied by FT-IR,TG-DSC and tensile strength. The results show that the silicon oxide is compatible with the Nation membrane and the thermo stability of Nation/Silicon oxide composite membrane is higher than that of Nation membrane. Furthermore, the tensile strength of Nation/Silicon oxide composite membrane is similar to that of the Nation membrane. The proton conductivity of Nation/Silicon oxide composite membrane is higher than that of Nation membrane. When the Nation/Silicon oxide composite membrane was employed as an electrolyte in H2/O2 PEMFC, a higher current density value (1 000 mA/cm^2 at 0.38 V) than that of the Nafion1135 membrane (100 mA/cm^2 at 0.04 V) was obtained at 110 ℃. Nafion/Silicon oxide composite membranes were produced via in situ sol-gel reaction of tetraethylorthosilicate (TEOS) in Nafion membranes. The physicochemical properties of the membranes were studied by FT-IR,TG-DSC and tensile strength. The results show that the silicon oxide is compatible with the Nation membrane and the thermo stability of Nation/Silicon oxide composite membrane is higher than that of Nation membrane. Furthermore, the tensile strength of Nation/Silicon oxide composite membrane is similar to that of the Nation membrane. The proton conductivity of Nation/Silicon oxide composite membrane is higher than that of Nation membrane. When the Nation/Silicon oxide composite membrane was employed as an electrolyte in H2/O2 PEMFC, a higher current density value (1 000 mA/cm^2 at 0.38 V) than that of the Nafion1135 membrane (100 mA/cm^2 at 0.04 V) was obtained at 110 ℃.
作者 余军
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2007年第3期478-481,共4页 武汉理工大学学报(材料科学英文版)
基金 the National Natural Science Foundation of China(No.50632050)
关键词 PEMFC composite membrane silicon oxide high temperature PEMFC composite membrane silicon oxide high temperature
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参考文献10

  • 1Zhi-Gang Shao,Prabhuram Joghee,I Ming Hsing.Preparation and Characterization of Hybrid Nafion-Silica Membrane Doped with Phosphotungstic Acid for High Temperature Operation of Proton Exchange Membrane Fuel Cells[].Journal of Membrane Science.2004
  • 2R Savinell,E Yeager,D Tryk, et al.Apolymer Electrolyte for Operation at Temperatures up to 200 ℃[].Journal of the Electrochemical Society.1994
  • 3Yang C,Costamagnab P,Srinivasanb S,et al.Approaches and technical challenges to high temperature operation of proton exchange membrane fuel cells[].Journal of Power Sources.2001
  • 4G Alberti,,M Casciola,,L Massinelli,andB Bauer.Polymericprotonconductingmembranesformediumtemperaturefuelcells(110-160°C)[].Journal of Membrane Science.2001
  • 5KIM Y M,CHOI S H,LEE H C,et al.Organic-inorganic com posite membranes as addition of SiO2for high temperature-operation in polymer electrolyte membrane fuel cells(PEMFCs)[].Electrochimica Acta.2004
  • 6Antonucci P L,,Arico A S.Investigation of a direct methanol fuel cell based on a composite Nafion-silica electrolyte for high temperature operation[].Solid State Ionics.1999
  • 7Mauritz K A,Stefanithis I D,Davis S V,et al.Microstructural evolution of a silicon oxide phase in a perfluorosulfonic acid ionomer by an in situ solgel reaction[].Journal of Applied Polymer Science.1995
  • 8K. T. Adjemian,S. Srinivasan,J. Benziger,A. B. Bocarsly.Investigation of PEMFC operation above 100 ℃ employing perfluorosulfonic acid silicon oxide composite membranes[].Journal of Power Sources.2002
  • 9Zhenxing Liang Weimin Chen Jianguo Liu Suli Wang Zhenhua Zhou Wenzhen Li Gongquan Sun and Qin Xin ".FT-IR study of the microstructure of Nafionmembrane[].Journal of Membrane Science.2004
  • 10Deng Q. Wilkie C. A. Moore R. B. et al.TGA FTi.r. investigation of the thermal degradation of Nafion and Nafion [ silicon oxide ] - based nanocomposites[].Polymer.1998

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