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Nitrogen-doped RuS2 nanoparticles containing in situ reduced Ru as an efficient electrocatalyst for hydrogen evolution

机译:氮掺杂的RUS2纳米颗粒含有原位还原Ru作为氢气进化的有效电催化剂

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摘要

The production of hydrogen via water electrolysis brings hope for the realization of hydrogen economy, but there is still a lack of highly efficient and appropriate electrocatalysts for the generation of hydrogen in practical applications. In particular, reasonable construction and feasible preparation strategies are the essential requirements for excellent electrocatalysts. Herein, the heterostructures of N-RuS _(2) /Ru nanoparticles were designed by annealing the RuS _(2) nanoparticles in ammonia. By introducing a nitrogen dopant and single-phase Ru metal simultaneously, high-efficiency electrocatalytic performance for hydrogen evolution reaction (HER) was implemented, where the electrocatalyst of N-RuS _(2) /Ru exhibited a low onset overpotential of 76 mV and small overpotential of 120 mV at 10 mA cm ~(?2) in an acidic electrolyte. Besides, it displayed a low Tafel slope of 53 mV dec ~(?1) , a small interface charge transfer resistance, and long-time stability and durability, suggesting its remarkable properties as a promising HER electrocatalyst candidate.
机译:通过水电解的氢气产生希望实现氢气经济性,但仍然缺乏在实际应用中产生氢的高效和适当的电催化剂。特别是,合理的结构和可行的制备策略是优异电催化剂的必要要求。在此,通过在氨中的退火的Rus _(2)纳米颗粒来设计N-Rus _(2)/ Ru纳米粒子的异质结构。通过同时引入氮掺杂剂和单相Ru金属,实施了高效的电催化性能(她),其中N-Rus _(2)/ Ru的电催化剂表现出76mV的低发作过势。在酸性电解质中在10 mA cm〜(β2)下的小于120mV的小过电位。此外,它显示出53 mV DEC〜(?1)的低Tafel斜率,小界面电荷转移电阻和长时间稳定性和耐用性,表明其具有令人瞩目的属性作为其电催化剂候选者。

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