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Influence of Carbon on Molybdenum Carbide Catalysts for the Hydrogen Evolution Reaction

机译:碳对氢化反应碳化钼催化剂的影响

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The influence of carbon on molybdenum carbide catalysts for the hydrogen evolution reaction (HER) is discussed. The carbon content is adjusted by varying the molar ratio of molybdenum and glucose sources and the holding time in the carbonization process. The carbon plays a crucial role in the determination of phase formation, surface area, and electrical resistance, which are associated with the final HER activity. There is a contradiction between the reduced active sites and improved electrical resistance that results from the reduced content of carbon, and a balance can be achieved with a holding time of 9 h to provide the best HER activity with a low Tafel slope of 55 mV dec(-1) and a high exchange current density of 0.047 mA cm(-2). Importantly, the transformation of the order of the free carbon improves the electrical conductivity remarkably to result in a great improvement in the final HER activity.
机译:讨论了碳对氢化反应(她)碳化钼催化剂的影响。 通过改变钼和葡萄糖源的摩尔比和碳化过程中的保持时间来调节碳含量。 碳在与最终的活动相关联的相形成,表面积和电阻中起着至关重要的作用。 降低的活性位点之间存在矛盾,并改善了由碳含量降低导致的电阻,并且可以通过9小时的持有时间来实现平衡,以提供55 MV Dec的低Tafel斜率的最佳活动 (-1)和高交换电流密度为0.047 mA cm(-2)。 重要的是,自由碳顺序的转化显着提高了电导率,导致最终活动的巨大改善。

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