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首页> 外文期刊>Electrochimica Acta >Ni/NiO nanosheets for alkaline hydrogen evolution reaction: In situ electrochemical-Raman study
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Ni/NiO nanosheets for alkaline hydrogen evolution reaction: In situ electrochemical-Raman study

机译:Ni / NiO纳米碱解碱性氢气进化反应:原位电化学 - 拉曼研究

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摘要

Nickel/Nickel oxide (Ni/NiO) nanosheets heterostructure is a cheap and active catalyst for hydrogen evolution reaction (HER) in alkaline electrolytes. However, the reason for this activity is still under debate. Herein in-situ Raman electrochemistry has been established as a method to probe interfacial intermediates and correlate the performance of various nickel catalysts (Ni, NiO, and Ni/NiO nanosheets) during HER. In-situ Raman spectroscopy demonstrated that Ni/NiO nanosheet heterostructure maintained beta-Ni(OH)(2) species initially, which may contribute to the superior initial HER activity. Ni/NiO nanosheets lost beta-Ni(OH)(2) species by preserving a high cathodic overpotential (-0.4 V vs. RHE) for 2000 sec. The results confirmed the importance of Ni metal sites in addition to NiO sites and maintaining hydroxide species for superior and durable HER activity. These results can be utilized to design an efficient and durable catalyst for alkaline electrolyzers for the sustainable production of hydrogen. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:镍/氧化镍(Ni / NiO)纳米蛋白酶异质结构是碱性电解质中的氢进化反应(她)的廉价和活性催化剂。但是,这项活动的原因仍在辩论下。这里已经建立了原位拉曼电化学作为探测界面中间体的方法,并在她期间与各种镍催化剂(Ni,NiO和Ni / NiO anoheets的性能相关联。原位拉曼光谱证明Ni / NiO纳米蛋白杂交属性最初保持β-Ni(OH)(2)种,这可能有助于优越的初始活性。 NI / NIO纳米胸部通过保留2000秒的高阴极超态(-0.4 V与RHE)来丢失β-NI(OH)(2)种。结果证实了Ni金属位点的重要性,除了NiO位点以及维持氢氧化物物种以获得优越和耐用的她的活动。这些结果可用于设计用于碱性电解器的高效和耐用的催化剂,用于氢的可持续生产。 (c)2020提交人。 elsevier有限公司出版

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