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Mo2C/Reduced-Graphene-Oxide Nanocomposite: An Efficient Electrocatalyst for the Hydrogen Evolution Reaction

机译:Mo2C /还原石墨烯-氧化物纳米复合材料:氢气析出反应的高效电催化剂

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摘要

A highly active, stable and inexpensive electrocatalyst, nanosized-Mo2C/reduced-graphene-oxide (nanoMo(2)C/RGO), is developed for the hydrogen evolution reaction, which is of vital importance for environment concerns and the energy crisis. The nanocomposite catalyst is synthesized by a novel strategy through the facile calcination of a pre-prepared organic-inorganic hybrid MoOx-amine precursor of sub-nanosized periodic structure. The intercalation of the amine in the organic-inorganic precursor leads to the synchronous reduction of MoOx-amine to Mo2C and GO to RGO in an inert atmosphere, and thus nano-Mo2C/RGO is facilely synthesized with highly monodisperse Mo2C nanoparticles (3-5nm) as well as the reduced graphene. The remarkable structures and features are demonstrated to be the determinants for accelerating the interfacial electrocatalytic reaction with low charge-transfer resistance and high interfacial capacitance. This study should provide a new perspective on the development of efficient noble-metal-free electrocatalysts in the fields of energy conversion and storage.
机译:高活性,稳定和廉价的电催化剂,纳米级的Mo2C /氧化石墨烯氧化物(nanoMo(2)C / RGO),被开发用于氢气释放反应,这对于环境问题和能源危机至关重要。纳米复合催化剂是通过新颖的策略,通过对预制备的亚纳米级周期性结构的有机-无机杂化MoOx-胺前体的轻松煅烧而合成的。胺在有机无机前体中的插入导致在惰性气氛中将MoOx-胺同步还原为Mo2C和GO还原为RGO,因此可以使用高度单分散的Mo2C纳米颗粒(3-5nm)轻松合成纳米Mo2C / RGO )以及还原的石墨烯。显着的结构和特征被证明是用于加速具有低电荷转移电阻和高界面电容的界面电催化反应的决定因素。这项研究应为能源转换和存储领域中高效无贵金属电催化剂的开发提供新的视角。

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