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Preparation and properties of composite membrane of bisphenol A-based sulfonated poly(arylene ether sulfone)and phosphotungstic acid for proton exchange membranes
引用本文:张妮,刘惠玲,李君敬,夏至. Preparation and properties of composite membrane of bisphenol A-based sulfonated poly(arylene ether sulfone)and phosphotungstic acid for proton exchange membranes[J]. 哈尔滨工业大学学报(英文版), 2010, 17(5): 636-640
作者姓名:张妮  刘惠玲  李君敬  夏至
作者单位:State Key Laboratory of Urban Water Resources and Environment,School of Municipal and Environmental Engineering,Harbin Institute of Technology,Harbin 150090,China 
基金项目:Sponsored by the National Creative Research Group and the National Natural Science Foundation of China(Grant No.50821002)
摘    要:A series of bi A-SPAES(Ds=0.4)/phosphotungstic acid(PWA/bi A-SPAES)composite membranes with various contents of PWA were prepared and characterized by FT-IR.Scanning electron microscopy(SEM)images indicated the PWA were well dispersed within polymer matrix.These composite membranes were evaluated for proton exchange membranes(PEM)in direct methanol fuel cell(DMFC).These membranes showed good thermal stability.It was found that the water uptake of these membranes increased with the increase of the PWA content in the hybrid membranes.Meanwhile,the introduction of inorganic particles increased both the proton conductivity and the methanol permeability.The proton conductivities of composite membranes were increased from 0.017 S/cm to 0.045 S/cm at 20 ℃ and from 0.054 S/cm to 0.093 S/cm at 100 ℃ with the increase of PWA content from 0 to 50 %.Especially,all the methanol diffusion coefficients(4.20×10-8-1.05×10-7cm2/s)of bi A-SPAES/PWA hybrid membranes are much lower than that of Nafion 117 membrane(2.1×10-6 cm2/s).Bi A-SPAES/PWA hybrid membranes were therefore proposed as candidates of material for PEM in DMFC.

关 键 词:bi A-SPAES  PWA  DMFC  proton conductivity  methanol permeability

Preparation and properties of composite membrane of bisphenol A-based sulfonated poly(arylene ether sulfone)and phosphotungstic acid for proton exchange membranes
ZhangNi,LIU Hui-ling,LI Jun-jing and XiaZhi. Preparation and properties of composite membrane of bisphenol A-based sulfonated poly(arylene ether sulfone)and phosphotungstic acid for proton exchange membranes[J]. Journal of Harbin Institute of Technology (New Series), 2010, 17(5): 636-640
Authors:ZhangNi  LIU Hui-ling  LI Jun-jing  XiaZhi
Affiliation:(State Key Laboratory of Urban Water Resources and Environment,School of Municipal and Environmental Engineering,Harbin Institute of Technology,Harbin 150090,China)
Abstract:A series of bi A-SPAES (Ds=0.4)/phosphotungstic acid (PWA/bi A-SPAES) composite membranes with various contents of PWA were prepared and characterized by FT-IR.Scanning electron microscopy (SEM) images indicated the PWA were well dispersed within polymer matrix.These composite membranes were evaluated for proton exchange membranes (PEM) in direct methanol fuel cell (DMFC).These membranes showed good thermal stability.It was found that the water uptake of these membranes increased with the increase of the PWA content in the hybrid membranes.Meanwhile,the introduction of inorganic particles increased both the proton conductivity and the methanol permeability.The proton conductivities of composite membranes were increased from 0.017 S/cm to 0.045 S/cm at 20 ℃ and from 0.054 S/cm to 0.093 S/cm at 100 ℃ with the increase of PWA content from 0 to 50 %.Especially,all the methanol diffusion coefficients (4.20×10-8-1.05×10-7 cm2/s) of bi A-SPAES/PWA hybrid membranes are much lower than that of Nafion 117 membrane (2.1×10-6 cm2/s).Bi A-SPAES/PWA hybrid membranes were therefore proposed as candidates of material for PEM in DMFC.
Keywords:bi A-SPAES  PWA  DMFC  proton conductivity  methanol permeability
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