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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Hierarchical Mo2C/C Scaffolds Organized by Nanosheets as Highly Efficient Electrocatalysts for Hydrogen Production
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Hierarchical Mo2C/C Scaffolds Organized by Nanosheets as Highly Efficient Electrocatalysts for Hydrogen Production

机译:由纳米片组织的分层MO2C / C支架作为高效电催化剂用于氢生产

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摘要

A facile and low-cost strategy is developed for the in situ synthesis of well-defined 3D porous scaffold-like Mo2C/C nanosheet hybrids as electrocatalysts for the hydrogen evolution reaction (HER). In this strategy, cubic NaCl particles play a critical template role in not only directing the formation of a 3D porous scaffold-like architecture but also creating a 2D-finite space to obtain Mo2C/C nanosheet hybrids. More importantly, the presence of NaCl will increase the content of amorphous carbon residue, reducing the charge transfer resistance. As a result, in this unique structure, the 3D porous scaffold can effectively avoid aggregation and expose more active sites, facilitating mass transportation, while the sheet-like Mo2C/C hybrids can achieve a relatively high density of catalytic sites with excellent charge transfer ability. Moreover, the effects of the mass ratio on the HER activity were also investigated. And the final optimized Mo2C/C electrocatalyst manifests an outstanding HER performance in both acidic and alkaline media with small Tafel slopes of 56 and 48 mV dec(-1), respectively.
机译:开发了一种容易和低成本的策略,用于原位合成明确定义的3D多孔支架样MO2C / C纳米蛋白杂种作为氢进化反应(她)的电催化剂。在该策略中,立方NaCl颗粒不仅在指导形成3D多孔脚手架的架构,而且产生了2D有限空间以获得MO2C / C纳米晶片混合动力的关键模板作用。更重要的是,NaCl的存在将增加无定形碳残留物的含量,降低电荷转移抗性。结果,在这种独特的结构中,3D多孔支架可以有效地避免聚集并曝光更多的活性位点,促进质量运输,而片状MO2C / C杂交物可以实现具有优异电荷转移能力的相对高密度的催化位点。此外,还研究了质量比对她活性的影响。最终优化的MO2C / C电催化剂在酸性和碱性介质中表现出优异的性能,分别具有56和48 mV Dec(-1)的小Tafel斜率。

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