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Nafion-TiO{sub}2 composite DMFC membranes: physico-chemical properties of the filler versus electrochemical performance

机译:Nafion-TiO {sub} 2复合DMFC膜:填料的理化性质与电化学性能

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TiO{sub}2 nanometric powders were prepared via a sol-gel procedure and calcined at various temperatures to obtain different surface and bulk properties. The calcined powders were used as fillers in composite Nafion membranes for application in high temperature direct methanol fuel cells (DMFCs). The powder physico-chemical properties were investigated by X-ray diffraction (XRD), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS) and pH measurements. The observed characteristics were correlated to the DMFC electrochemical behaviour. Analysis of the high temperature conductivity and DMFC performance reveals a significant influence of the surface characteristics of the ceramic oxide, such as oxygen functional groups and surface area, on the membrane electrochemical behaviour. A maximum DMFC power density of 350mWcm{sup}(-2) was achieved under oxygen feed at 145 ℃ in a pressurized DMFC (2.5 bar, anode and cathode) equipped with TiO{sub}2 nano-particles based composite membranes.
机译:TiO {sub} 2纳米粉末是通过溶胶-凝胶法制备的,并在各种温度下煅烧以获得不同的表面和体积特性。煅烧的粉末用作复合Nafion膜的填料,用于高温直接甲醇燃料电池(DMFC)。通过X射线衍射(XRD),透射电子显微镜(TEM),X射线光电子能谱(XPS)和pH测量研究了粉末的理化性质。观察到的特性与DMFC的电化学行为相关。对高温电导率和DMFC性能的分析表明,陶瓷氧化物的表面特性(如氧官能团和表面积)对膜的电化学行为有重大影响。在配备了TiO {sub} 2纳米粒子复合膜的加压DMFC(2.5 bar,阳极和阴极)中,在145℃下供氧,在145℃下供氧时,DMFC的最大功率密度为350mWcm {sup}(-2)。

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