Highly efficient nanoporous CoBP electrocatalyst for hydrogen evolution reaction

Water splitting is an environment friendly and efficient way to produce hydrogen. Highly efficient and low-cost non-noble metal catalysts play an important role in hydrogen evolution reaction (HER). Dealloying is a simple method to prepare three-dimensional self-supporting nanoporous materials witho...

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Veröffentlicht in:Rare metals 2021-05, Vol.40 (5), p.1031-1039
Hauptverfasser: Guang, Hui-Lan, Zhu, Sheng-Li, Liang, Yan-Qin, Wu, Shui-Lin, Li, Zhao-Yang, Luo, Shui-Yuan, Cui, Zhen-Duo, Inoue, Akihisa
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Sprache:eng
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Zusammenfassung:Water splitting is an environment friendly and efficient way to produce hydrogen. Highly efficient and low-cost non-noble metal catalysts play an important role in hydrogen evolution reaction (HER). Dealloying is a simple method to prepare three-dimensional self-supporting nanoporous materials without conductive supports and binders. In this work, we prepared self-supporting nanoporous CoBP electrocatalyst by dealloying method. The influence of the synergistic effect of nonmetallic elements on catalytic activity was investigated. The synergistic electronic effect of Co, B and P atoms on the surface optimizes the H atoms desorption and results in superior HER activity. The bi-continuous structure of nanoporous CoBP provides more active area and favors of electron and electrolyte transfer. The nanoporous CoBP with the B/P atomic ratio of 1/3 exhibits low overpotential of 42 mV at 10 mA·cm −2 , small Tafel slope of 39.8 mV·dec −1 and good long-term stability with no performance decrease for 20 h in alkaline solution. Graphic abstract
ISSN:1001-0521
1867-7185
DOI:10.1007/s12598-020-01697-7