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Composite Inorganic Filler Based Electrolyte Membranes for Fuel Cells Applications

机译:基于复合无机填料的燃料电池应用的电解质膜

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Various recast Nafion~® composite membranes containing ceramic oxide fillers with different surface characteristics (SiO_2, SiO_2-PWA, Al_2O_3, ZrO_2) have been investigated for application in high temperature direct methanol fuel cells (DMFCs). Cell resistance at 145°C increases as a function of the pH of slurry of the inorganic filler indicating a strong influence of the acid-base characteristics on the electrolyte conductivity. This effect has been attributed to the different water retention capabilities of the various membranes. Fuel cell performance at 145°C, expressed as both maximum power density and current density at 0.5 V cell potential, increases almost linearly as the pH of slurry of the oxide materials decreases. Appropriate selection of the surface properties for the inorganic fillers allows to enhance the proton conductivity and extends the operating temperature range of composite membranes. An infrared spectroscopic investigation of inorganic fillers employed in composite membranes has been carried out. The surface acidity of the fillers appears to influence the bending and stretching vibrational frequencies of the water physically adsorbed on the filler surface. Inorganic fillers characterised by acidic properties undergo a strong interaction with water and enhance the DMFC performance at high temperature.
机译:各种重铸Nafion〜®已经研究了含有不同表面特性(SiO_2,SiO_2-PWA,Al_2O_3,ZrO_2)的陶瓷氧化物填料的复合膜用于高温直接甲醇燃料电池(DMFC)。 145℃的电池抗性随着无机填料的浆料pH的函数增加,表明酸基本特性对电解质导电性的强烈影响。这种效果已归因于各种膜的不同水保持能力。在145℃下的燃料电池性能,表示为0.5V细胞电位的最大功率密度和电流密度,随着氧化物材料的浆料的pH降低,几乎线性地增加。 Appropriate selection of the surface properties for the inorganic fillers allows to enhance the proton conductivity and extends the operating temperature range of composite membranes.已经进行了复合膜中使用的无机填料的红外光谱研究。填料的表面酸度似乎影响物理吸附在填充表面上的水的弯曲和拉伸振动频率。以酸性特性为特征的无机填料经历了与水的强相互作用,并在高温下提高DMFC性能。

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