Hierarchical NiO x nanotube arrays/CoP nanosheets heterostructure enables robust alkaline hydrogen evolution reaction

Rational design of low-cost and high-efficiency electrocatalysts for hydrogen evolution reaction (HER) is critical for scalable and sustainable hydrogen production from economical water-alkali splitting. Herein, density functional theory (DFT) calculations reveal that coupling NiO and CoP could effe...

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Veröffentlicht in:Journal of colloid and interface science 2023-08, Vol.643, p.350
Hauptverfasser: Feng Zai, Shi, Han Wu, Yu, Tong Zhou, Yi, Tian Hui Li, Zhao, Bin Guo, Chun
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Sprache:eng
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Zusammenfassung:Rational design of low-cost and high-efficiency electrocatalysts for hydrogen evolution reaction (HER) is critical for scalable and sustainable hydrogen production from economical water-alkali splitting. Herein, density functional theory (DFT) calculations reveal that coupling NiO and CoP could effectively boost overall HER kinetics through lowing the H O dissociation barrier, accelerating the OH* transfer process, and providing the rapid H* migration kinetics as well as the appropriate H* energetics. Based on these findings, we successfully prepared a three-dimensional (3D) self-supported electrode of ultrathin CoP nanosheets directly grown on the surface-oxidized Ni nanotube arrays via a simple and scalable electrochemical synthesis method. As expected, such a heterostructure electrode exhibits superior alkaline HER performance with low overpotentials of 51 and 164 mV to drive the current densities of 10 and 500 mA cm , respectively, outperforming most of the efficient alkaline HER electrocatalysts.
ISSN:1095-7103