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Simulation Of Nanostructured Electrodes For Polymer Electrolyte Membrane Fuel Cells

机译:聚合物电解质膜燃料电池纳米结构电极的模拟

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Aligned carbon nanotubes (CNTs) with Pt uniformly deposited on them are being considered in fabricating the catalyst layer of polymer electrolyte membrane (PEM) fuel cell electrodes. When coated with a proton conducting polymer (e.g., Nafion) on the Pt/CNTs, each Pt/CNT acts as a nanoelectrode and a collection of such nanoelectrodes constitutes the proposed nanostructured electrodes. Computer modeling was performed for the cathode side, in which both multicomponent and Knudsen diffusion were taken into account. The effect of the nanoelectrode lengths was also studied with catalyst layer thicknesses of 2,4, 6, and 10 μm. It was observed that shorter lengths produce better electrode performance due to lower diffusion barriers and better catalyst utilization. The effect of spacing between the nanoelectrodes was studied. Simulation results showed the need to have sufficiently large gas pores, i.e., large spacing, for good oxygen transport. However, this is at the cost of obtaining large electrode currents due to reduction of the number of nanoelectrodes per unit geometrical area of the nanostructured electrode. An optimization of the nanostructured electrodes was obtained when the spacing was at about 400 nm that produced the best limiting current density.
机译:在制造聚合物电解质膜(PEM)燃料电池电极的催化剂层时,正在考虑均匀沉积有Pt的取向碳纳米管(CNT)。当在Pt / CNT上涂覆质子传导聚合物(例如,Nafion)时,每个Pt / CNT充当纳米电极,并且这种纳米电极的集合构成了提出的纳米结构的电极。对阴极侧进行了计算机建模,其中考虑了多组分扩散和克努森扩散。还研究了催化剂层厚度为2,4、6和10μm时纳米电极长度的影响。观察到较短的长度由于较低的扩散势垒和较好的催化剂利用率而产生更好的电极性能。研究了纳米电极之间的间距的影响。模拟结果表明需要具有足够大的气孔,即大的间隔,以良好的氧气传输。然而,由于纳米结构电极的每单位几何面积的纳米电极数量的减少,这是以获得大的电极电流为代价的。当间隔在约400nm时产生最佳极限电流密度时,获得了纳米结构电极的优化。

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