Efficient visible-light-driven water oxidation by single-crystal Ta3N5 nanoparticles

被引:0
作者
Zheng Wang
Jeongsuk Seo
Takashi Hisatomi
Mamiko Nakabayashi
Jiadong Xiao
Shanshan Chen
Lihua Lin
Zhenhua Pan
Mary Krause
Nick Yin
Gordon Smith
Naoya Shibata
Tsuyoshi Takata
Kazunari Domen
机构
[1] Shinshu University,Research Initiative for Supra
[2] Chinese Academy of Sciences,Materials, Interdisciplinary Cluster for Cutting Edge Research
[3] The University of Tokyo,Research Center for Eco
[4] Global Advanced Metals Inc.,Environmental Sciences
[5] Office of University Professors,Institute of Engineering Innovation
[6] The University of Tokyo,undefined
来源
Nano Research | 2023年 / 16卷
关键词
Ta; N; photocatalyst; nanoparticle; single crystal; O; evolution; metallic Ta precursor;
D O I
暂无
中图分类号
学科分类号
摘要
Ta3N5 is regarded as a promising photocatalyst for solar water splitting because of its excellent visible light absorption characteristics and simple composition. Conventional Ta3N5 photocatalysts prepared from oxide precursors typically comprise aggregated polycrystalline particles with defects and grain boundaries that reduce the water oxidation activity of the material. In the present work, well-dispersed Ta3N5 nanoparticulate single crystals were synthesized via a mild nitridation process using pure Ta metal nanopowder or Ta nanopowder mixed with NaCl. The resulting high-quality Ta3N5 nanoparticles, after loading with an oxygen evolution cocatalyst, exhibited impressively high photocatalytic performance during O2 evolution from a sacrificial AgNO3 solution, with an apparent quantum yield of 9.4% at 420 nm. Our findings suggest a new approach to the facile fabrication of nanostructured single-crystal photocatalysts for efficient solar water splitting, based on the use of metal nanopowders.
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页码:4562 / 4567
页数:5
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