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Textured NiSe2 Film: Bifunctional Electrocatalyst for Full Water Splitting at Remarkably Low Overpotential with High Energy Efficiency

机译:NiSe2织构化膜:双功能电催化剂可在极低的超电势下实现高水效率的全水分解

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摘要

Herein we have shown that electrodeposited NiSe2 can be used as a bifunctional electrocatalyst under alkaline conditions to split water at very low potential by catalyzing both oxygen evolution and hydrogen evolution reactions at anode and cathode, respectively, achieving a very high electrolysis energy efficiency exceeding 80% at considerably high current densities (100 mA cm−2). The OER catalytic activity as well as electrolysis energy efficiency surpasses any previously reported OER electrocatalyst in alkaline medium and energy efficiency of an electrolyzer using state-of-the-art Pt and RuO2 as the HER and OER catalyst, respectively. Through detailed electrochemical and structural characterization, we have shown that the enhanced catalytic activity is attributed to directional growth of the electrodeposited film that exposes a Ni-rich lattice plane as the terminating plane, as well as increased covalency of the selenide lattice which decreases the Ni(II) to Ni(III) oxidation potential. Thereby, the high efficiency along with extended stability makes NiSe2 as the most efficient water electrolyzer known to-date.
机译:在这里,我们已经表明,电沉积的NiSe2可以在碱性条件下用作双功能电催化剂,通过分别催化阳极和阴极的氧气释放和氢气释放反应,在很低的电势下分解水,实现了超过80%的很高的电解能量效率在相当高的电流密度(100 mA cm −2 )下工作。在碱性介质中,OER的催化活性和电解能效均超过了以前报道的OER电催化剂,并且分别使用了最新的Pt和RuO2作为HER和OER催化剂,其能效超过了电解器的能效。通过详细的电化学和结构表征,我们发现增强的催化活性归因于电沉积膜的定向生长,该膜沉积了富镍晶格面作为终止面,以及硒化物晶格的共价增加,从而降低了镍。 (II)至Ni(III)的氧化电位。因此,高效率以及扩展的稳定性使NiSe2成为迄今为止已知的最有效的水电解槽。

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