首页> 外文会议>International Conference on Separation Science and Technology(ICSST'2007); 20071014-16; Beijing(CN) >High performance DMFC systems using proton conductive hydrocarbon membrane
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High performance DMFC systems using proton conductive hydrocarbon membrane

机译:使用质子传导烃膜的高性能DMFC系统

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摘要

Passive DMFC systems having different structures including various active areas were fabricated. Hydrocarbonated ionomer, sulfonated polyimide(SPI)-silica nanocomposite membrane, and perfluorinated ionomer, Nafion 117 ? , were used as proton conductive membrane. Passive DMFC showed poorer electrochemical performance than active DMFC because it could not be operated under heating condition and no feeding system made concentration polarization very high. Comparing with Nafion 117, SPI-silica nanocomposite membrane showed high passive cell performance, because of its high proton conductivity and low MeOH permeability. As cell design and preparation condition of passive DMFC system had a significant effect on electrochemical performance, they should be optimized for best performance.
机译:制造具有包括各种有源区域的不同结构的无源DMFC系统。烃离聚物,磺化聚酰亚胺(SPI)-二氧化硅纳米复合膜和全氟离聚物Nafion 117?用作质子传导膜。被动DMFC的电化学性能比主动DMFC差,这是因为它不能在加热条件下运行,并且没有进料系统使浓差极化非常高。与Nafion 117相比,SPI-二氧化硅纳米复合膜由于其高质子传导性和低MeOH渗透性而显示出高被动电池性能。由于无源DMFC系统的电池设计和制备条件对电化学性能有重大影响,因此应对其进行优化以获得最佳性能。

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