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Effect of Fe content on Pt-Fe/C bimetallic catalyst performance by pulse-microwave assisted chemical reduction

机译:Pt-Fe / C双金属中铁含量的影响通过pulse-microwave辅助催化剂性能化学还原

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摘要

Pt-Fe/C bimetallic catalyst for proton exchange membrane fuel cells (PEMFCs) was prepared by a pulse-microwave assisted chemical reduction synthesis (PMWSCR) process. The microstructure and morphology of the as-prepared catalysts were characterized by transmission electron microscopy (TEM) and X- ray diffraction (XRD). The electrocatalytic performance was measured by cyclic voltammetry and constant potential polarization method. The results indicate that the PMWSCR is an efficient method for preparing bimetallic catalyst, and the Pt-Fe atomic ratio are of great important on the size and dispersion of Pt nanoparticles, crystal structure, and catalytic performance. When the atomic ratio of Pt/Fe is 1, the metal nanoparticles are uniform and highly dispersed on the surface of carbon support with an average size of 1.8 nm. The electrochemical measurements show that the electrochemical surface area of the catalyst is 61.9 m~2 ·g~(-1) when the atomic ratio of Pt/Fe is 1, and the catalyst exhibits the superior performance as the cathode catalyst with a power density of 3.3 W·cm~(-2) ·mg~(-1) .
机译:对质子交换Pt-Fe / C双金属催化剂膜燃料电池(pemfc)是由一个准备的pulse-microwave辅助化学还原合成(PMWSCR)过程。和形态学和催化剂透射电子显微镜的特征(TEM)和X -射线衍射(XRD)。electrocatalytic性能是衡量循环伏安法和恒定的潜力极化的方法。准备的PMWSCR是一种有效的方法双金属催化剂,Pt-Fe原子比例在大小和分散的重要Pt纳米粒子的晶体结构催化性能。Pt /铁是1,金属纳米颗粒均匀表面和高度分散的碳平均大小为1.8 nm的支持。电化学测量表明,电化学表面积的催化剂61.9米~ 2·g ~(1)当Pt / Fe原子的比例是1,和催化剂展览上性能的阴极催化剂的权力密度3.3 W·厘米~(2)·毫克~(1)。

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