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Performance Improvement in Direct Methanol Fuel Cell Cathode Using High Mesoporous Area Catalyst Support

机译:使用高介孔面积催化剂载体提高直接甲醇燃料电池正极的性能

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摘要

Black Pearls 2000 (designated as BP-2000) and Vulcan XC-72 (designated as XC-72) carbon blacks were chosen as supports to prepare 40 wt percent (the targeted value) Pt/C catalysts by a modified polyol process. The carbon blacks were characterized by N2 adsorption and Fourier tranform infrared spectroscopy. The prepared catalysts were characterized by inductively coupled plasma atomic emission spectroscopy, transmission electron microscopy, scanning electron microscopy (SEM), in situ cyclic voltammetry, and current-voltage curves. On BP-2000, Pt nanoparticles were larger in size and more unevenly distributed than on XC-72. It was observed by SEM that the corresponding catalyst layer on BP-2000 was thicker than that of XC-72 based catalyst at almost the identical catalyst loading. And the BP-2000 supported catalyst gave a better single cell performance at high current densities. These results suggest that the performance improvement is due to the enhanced oxygen diffusion and water removal capability when BP-2000 is used as cathode catalyst support.
机译:选择Black Pearls 2000(指定为BP-2000)和Vulcan XC-72(指定为XC-72)炭黑作为载体,通过改进的多元醇工艺制备40 wt%(目标值)的Pt / C催化剂。通过N2吸附和傅立叶变换红外光谱对炭黑进行表征。通过电感耦合等离子体原子发射光谱,透射电子显微镜,扫描电子显微镜(SEM),原位循环伏安法和电流-电压曲线对制备的催化剂进行了表征。与XC-72相比,在BP-2000上,Pt纳米粒子的尺寸更大,分布更不均匀。通过SEM观察,在几乎相同的催化剂负载下,BP-2000上的相应催化剂层比XC-72基催化剂的层厚。 BP-2000负载型催化剂在高电流密度下具有更好的单电池性能。这些结果表明,当将BP-2000用作阴极催化剂载体时,性能的提高归因于增强的氧扩散和除水能力。

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