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Graphite Carbon-Supported Mo2C Nanocomposites by a Single-Step Solid State Reaction for Electrochemical Oxygen Reduction

机译:石墨碳负载的Mo2C纳米复合材料的一步式固态反应用于电化学还原氧

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摘要

Novel graphite-molybdenum carbide nanocomposites (G-Mo2C) are synthesized by a typical solid state reaction with melamine and MoO3 as precursors under inert atmosphere. The characterization results indicate that G-Mo2C composites are composed of high crystallization and purity of Mo2C and few layers of graphite carbon. Mo2C nanoparticles with sizes ranging from 5 to 50 nm are uniformly supported by surrounding graphite layers. It is believed that Mo atom resulting from the reduction of MoO3 is beneficial to the immobilization of graphite carbon. Moreover, the electrocatalytic performances of G-Mo2C for ORR in alkaline medium are investigated by cyclic voltammetry (CV), rotating disk electrode (RDE) and chronoamperometry test with 3M methanol. The results show that G-Mo2C has a considerable catalytic activity and superior methanol tolerance performance for the oxygen reduction reaction (ORR) benefiting from the chemical interaction between the carbide nanoparticles and graphite carbon.
机译:通过在惰性气氛下以三聚氰胺和MoO3为前体的典型固相反应合成了新型石墨-碳化钼纳米复合材料(G-Mo2C)。表征结果表明,G-Mo2C复合材料由高结晶度和高纯度的Mo2C和少量的石墨碳组成。尺寸为5至50 nm的Mo2C纳米颗粒被周围的石墨层均匀支撑。据信由MoO 3的还原产生的Mo原子有利于石墨碳的固定。此外,通过循环伏安法(CV),转盘电极(RDE)和3M甲醇计时计时法研究了G-Mo2C对ORR在碱性介质中的电催化性能。结果表明,G-Mo2C受益于碳化物纳米颗粒和石墨碳之间的化学相互作用,对氧还原反应(ORR)具有相当大的催化活性和优异的甲醇耐受性。

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