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Molybdenum-containing amorphous metal oxide catalysts for oxygen evolution reaction

机译:用于氧释放反应的含钼非晶态金属氧化物催化剂

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Amorphous mixed metal oxide oxygen evolution reaction catalysts containing Mo, Co, and Fe were synthesized by a low energy required photochemical metal-organic deposition (PMOD) process. The composition of the ternary amorphous metal oxide catalyst film can be precisely controlled as to its precursor solution, and there was no phase segregation observed. The electrocatalytic activity of this ternary catalyst system was carefully mapped out as contour plots to illustrate the kinetics parameters such as onset potential, Tafel slope as well as the overall performance, i.e. the potential required to reach the benchmark current density. In this study, adding higher valence state material, Mo, into catalytic active metal oxides, such as CoOx and FeOx, to form Co50Mo50Ox and Fe(50)Mo(50)Ox could highly increase the catalyst stability. More importantly, the ternary metal oxide Fe10CO25Mo65Ox showed the advantage of the relatively low onset potential (1.52 V), low Tafel slope (similar to 31 mV/dec), lowest potential to reach the benchmark 1 mA/cm(2) and a better stability for the oxygen evolution reaction in Mo/Co/Fe system. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过低能耗的光化学金属有机沉积(PMOD)工艺合成了含有Mo,Co和Fe的非晶态混合金属氧化物氧析出反应催化剂。关于其前体溶液,可以精确地控制三元非晶态金属氧化物催化剂膜的组成,并且没有观察到相偏析。将该三元催化剂体系的电催化活性仔细绘制为等高线图,以说明动力学参数,例如起始电势,Tafel斜率以及整体性能,即达到基准电流密度所需的电势。在这项研究中,将较高价态的材料Mo添加到催化活性金属氧化物中,例如CoOx和FeOx,形成Co50Mo50Ox和Fe(50)Mo(50)Ox可以大大提高催化剂的稳定性。更重要的是,三元金属氧化物Fe10CO25Mo65Ox具有以下优点:相对较低的起始电势(1.52 V),较低的Tafel斜率(类似于31 mV / dec),达到基准1 mA / cm(2)的最低电势以及更好的Mo / Co / Fe体系中氧释放反应的稳定性。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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