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A study on the characteristics of the diffusion layer thickness and porosity of the PEMFC

机译:PEMFC扩散层厚度和孔隙率特性研究

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In the preparation of electrodes for the proton exchange membrane (PEMFC), the effect of the fabrication method and the thickness of the gas diffusion layer and the impregnation method of Nafion solution on the cell performance was investigated, and unit cell tests were performed. The gas diffusion layer was prepared by rolling, spraying, and screen printing methods, and Nafion solution was impregnated using spraying and brushing methods. The diffusion layer in a PEMFC consists of a thin layer of carbon black mixed with polytetrafluoroethylene (PTFE) that is coated onto a sheet of macro-porous carbon backing cloth. The effects of different fabrication methods and thicknesses of gas diffusion layer are discussed in the light of porosimetry and Ⅰ-Ⅴ polarization curves and variables related to the electrode analyzed by numerical simulation. The spraying method proved to be more profitable for cell performance than the brushing method for the impregnation of Nafion solution because it reduced the charge transfer resistance and extended the three-phase region. The goals of this work are to find the optimum thickness of the gas diffusion layer and to undertake an analysis of the system.
机译:在制备用于质子交换膜(PEMFC)的电极时,研究了制备方法和气体扩散层的厚度以及Nafion溶液的浸渍方法对电池性能的影响,并进行了单元电池测试。通过辊涂,喷涂和丝网印刷方法制备气体扩散层,并且使用喷涂和刷涂方法浸渍Nafion溶液。 PEMFC中的扩散层由炭黑与聚四氟乙烯(PTFE)混合而成的薄层组成,该薄层涂覆在一块大孔碳衬布上。通过孔隙率法,Ⅰ-Ⅴ极化曲线及与电极有关的变量,通过数值模拟分析了不同制备方法和气体扩散层厚度的影响。事实证明,喷涂方法比浸渍Nafion溶液的刷涂方法对电池性能更有利,因为它降低了电荷转移电阻并扩展了三相区域。这项工作的目标是找到气体扩散层的最佳厚度并进行系统分析。

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