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用于增强光催化染料敏化析氢的无贵金属三元钴镍磷化物及其催化机理研究

Noble metal-free ternary cobalt-nickel phosphides for enhanced photocatalytic dye-sensitized hydrogen evolution and catalytic mechanism investigation.

作者信息

Cheng Zhixing, Xu Yiqin, Fei Bin

机构信息

Institute of Semiconductors, Guangdong Academy of Sciences Guangzhou 510070 P. R. China

School of Fashion & Textiles, The Hong Kong Polytechnic University Hong Kong 100872 P. R. China

出版信息

RSC Adv. 2023 Aug 7;13(34):23638-23647. doi: 10.1039/d3ra04235a. eCollection 2023 Aug 4.

Abstract

Transition metal phosphides have emerged as compelling alternatives to noble metal catalysts for photocatalytic hydrogen evolution, owing to their high efficiency, stability, ease of preparation, and low-cost-effectiveness. This study investigates a series of binary and ternary phosphides predominantly composed of cobalt and nickel employed for photocatalytic dye-sensitized hydrogen evolution. Under the optimal dye-to-catalyst mass ratio, CoNiP exhibited the highest hydrogen evolution activity (12.96 mmol g h), demonstrating more significant and satisfactory performance than a variety of other reported materials. This can be attributed to the high conductivity and low hydrogen evolution overpotential of phosphides, which result from their metallic characteristics and the presence of free electrons, which promote efficient electron transfer between the catalyst and sensitizer. Density functional theory calculations revealed that the cobalt incorporation into the binary phosphides causes a negative shift in the average d-band center for CoNiP, weakening the adsorption affinity of the catalyst towards H molecules, thus effectively improving the hydrogen evolution rate compared to the pure binary phosphides. This work provides valuable insights for the development of low-cost and high-performance ternary phosphide photocatalysts.

摘要

过渡金属磷化物因其高效、稳定、易于制备和低成本效益,已成为光催化析氢领域中贵金属催化剂的有力替代品。本研究考察了一系列主要由钴和镍组成的二元和三元磷化物用于光催化染料敏化析氢反应。在最佳染料与催化剂质量比下,CoNiP表现出最高的析氢活性(12.96 mmol g⁻¹ h⁻¹),比其他多种已报道材料展现出更显著且令人满意的性能。这可归因于磷化物的高导电性和低析氢过电位,这源于其金属特性和自由电子的存在,促进了催化剂与敏化剂之间的高效电子转移。密度泛函理论计算表明,钴掺入二元磷化物中会使CoNiP的平均d带中心发生负移,削弱催化剂对H分子的吸附亲和力,从而与纯二元磷化物相比有效提高了析氢速率。这项工作为低成本、高性能三元磷化物光催化剂的开发提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be4c/10405047/63b100fd9166/d3ra04235a-f1.jpg

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