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具有强碱性晶格氧的LiNiO/Ni异质结构实现类铂活性的电催化析氢反应

LiNiO/Ni Heterostructure with Strong Basic Lattice Oxygen Enables Electrocatalytic Hydrogen Evolution with Pt-like Activity.

作者信息

Lu Ke, Liu Yuzi, Lin Fan, Cordova Isvar A, Gao Siyuan, Li Bomin, Peng Bo, Xu Haiping, Kaelin Jacob, Coliz Daniel, Wang Cheng, Shao Yuyan, Cheng Yingwen

机构信息

Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, Illinois 60115, United States.

Center for Nanoscale Materials, Argonne National Laboratory, Lemont, Illinois 60439, United States.

出版信息

J Am Chem Soc. 2020 Jul 22;142(29):12613-12619. doi: 10.1021/jacs.0c00241. Epub 2020 Jul 7.

Abstract

The low-cost hydrogen production from water electrolysis is crucial to the deployment of sustainable hydrogen economy but is currently constrained by the lack of active and robust electrocatalysts from earth-abundant materials. We describe here an unconventional heterostructure composed of strongly coupled Ni-deficient LiNiO nanoclusters and polycrystalline Ni nanocrystals and its exceptional activities toward the hydrogen evolution reaction (HER) in aqueous electrolytes. The presence of lattice oxygen species with strong Brønsted basicity is a significant feature in such heterostructure, which spontaneously split water molecules for accelerated Volmer H-OH dissociation in neutral and alkaline HER. In combination with the intimate LiNiO and Ni interfacial junctions that generate localized hotspots for promoted hydride coupling and hydrogen desorption, the catalysts produce hydrogen at a current density of 10 mA cm under overpotentials of only 20, 50, and 36 mV in acidic, neutral, and alkaline electrolytes, respectively, making them among the most active Pt-free catalysts developed thus far. In addition, such heterostructures also exhibited superior activity toward the hydrogen oxidation reaction in alkaline electrolytes.

摘要

通过水电解低成本制氢对于可持续氢经济的发展至关重要,但目前受到缺乏来自储量丰富的地球元素的活性且耐用的电催化剂的限制。我们在此描述一种由强耦合的缺镍LiNiO纳米团簇和多晶镍纳米晶体组成的非常规异质结构,以及其在水性电解质中对析氢反应(HER)的卓越活性。具有强布朗斯特碱性的晶格氧物种的存在是这种异质结构的一个显著特征,其能自发地分解水分子,以加速中性和碱性析氢反应中的Volmer H-OH解离。结合紧密的LiNiO和Ni界面结,其能产生促进氢化物耦合和氢脱附的局部热点,该催化剂在酸性、中性和碱性电解质中,分别在仅20、50和36 mV的过电位下,以10 mA cm的电流密度产生氢气,使其成为迄今为止开发的最具活性的无铂催化剂之一。此外,这种异质结构在碱性电解质中对氢氧化反应也表现出优异的活性。

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