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首页> 外文期刊>ACS applied materials & interfaces >Two-Dimensional Lamellar Mo2C for Electrochemical Hydrogen Production: Insights into the Origin of Hydrogen Evolution Reaction Activity in Acidic and Alkaline Electrolytes
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Two-Dimensional Lamellar Mo2C for Electrochemical Hydrogen Production: Insights into the Origin of Hydrogen Evolution Reaction Activity in Acidic and Alkaline Electrolytes

机译:用于电化学氢生产的二维层状MO2C:耐酸性和碱性电解质中氢化反应活性的洞察

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摘要

Developing high surface area Mo2C with certain crystal plane exposed is an efficient strategy but is an urgent challenge to optimize the hydrogen evolution reaction (HER) catalytic performances. In addition, the effects of certain crystal faces on catalytic performance have been limitedly understood. Toward this end, the (1 0 0) plane oriented two-dimensional lamellar Mo2C transformed from carbon fibers is synthesized successfully in a molten salt system. Subsequently, the electrocatalytic properties toward HER show that (1 0 0) plane oriented Mo2C functions well in both acidic and basic media. The density functional theory calculations show that the most stable Mo/C termination of the (1 0 0) plane contains multiple catalytically active centers. These close-to-zero Delta G(H)* values verify its better HER performance. Besides, the correlation between hydrogen adsorption behavior and the water dissociation process as well as their corresponding roles in the overall acid and alkaline HER rates have been discussed in depth. A simple mechanistic analysis is put forward to explain the favorable HER performance of the lamellar structure beta-Mo2C in alkaline other than acid electrolytes. The molten salt method may provide a new way for developing electrocatalysts with oriented crystal faces.
机译:开发具有某些晶体平面的高表面积MO2C暴露是一种有效的策略,但是优化氢进化反应(她)催化性能的紧迫挑战。此外,有没有受到限于理解某些晶体面对催化性能的影响。朝向该端,从碳纤维转化的(10 0)面定向的二维层状二维层2C成功地合成在熔融盐系统中。随后,朝向她的电催化性质显示(1 0 0)面向体的MO2C在酸性和碱性培养基中均匀起作用。密度函数理论计算表明(1 0 0)平面的最稳定的MO / C终止含有多个催化活性中心。这些近距为零三角洲g(h)*值验证其性能更好。此外,深入讨论了氢吸附行为与水解离过程之间的相关性以及它们在整个酸和碱性速率中的相应作用。提出简单的机械分析,以解释除酸电解质的碱性外膜结构β-MO2C的良好性能。熔融盐法可以为用定向的晶面开发电催化剂的新方法。

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