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Revealing the effect of anion-tuning in bimetallic chalcogenides on electrocatalytic overall water splitting 被引量:2
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作者 Jian Zhou Yibo Dou +5 位作者 Tao He Awu Zhou Xiang-Jing Kong Xue-Qian Wu Tongxin Liu Jian-Rong Li 《Nano Research》 SCIE EI CSCD 2021年第12期4548-4555,共8页
Enhancing electrocatalytic water splitting performance by modulating the intrinsic electronic structure is of great importance. Here, porous bimetallic oxide and chalcogenide nanosheets grown on carbon paper denoted a... Enhancing electrocatalytic water splitting performance by modulating the intrinsic electronic structure is of great importance. Here, porous bimetallic oxide and chalcogenide nanosheets grown on carbon paper denoted as NiCo2X4/CP (X = O, S, and Se) are prepared to demonstrate how the anion components affect the electronic structures and thereby disclose the correlation between their intermediates interaction and catalytic activities. The experimental characterization and theoretical calculation demonstrate that Se and S substitution can promote the ratio of Co^(3+)/Co^(2+) and thereby modulate the electronic structure accompanied with the upshift of d band centers, which not only enhance the inner conductivity but also regulate the interaction between the catalyst surface and intermediates, especially for the adsorption of absorbed H and hydroperoxy intermediates towards respective hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). As a result, a full alkaline electrolyzer using NiCo2Se4/CP and NiCo2S4/CP as cathode and anode delivers a low voltage of 1.51 V at 10 mA·cm^(−2), which is comparable even superior to most transition metal-based electrolyzers. 展开更多
关键词 electrocatalytic overall water splitting electronic structure bimetallic chalcogenide high valence Co3+ intermediates interaction
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