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过渡金属掺杂的SrTiO光催化剂上的水分解,对高达660nm的可见光有响应。

Water splitting over transition metal-doped SrTiO photocatalysts with response to visible light up to 660 nm.

作者信息

Kaiya Kyohei, Ueki Yoshiya, Kawamoto Hiromasa, Watanabe Kenta, Yoshino Shunya, Yamaguchi Yuichi, Kudo Akihiko

机构信息

Department of Applied Chemistry, Faculty of Science, Tokyo University of Science Shinjuku-ku Tokyo 162-8601 Japan

Carbon Value Research Center, Research Institute for Science and Technology, Tokyo University of Science Noda-shi Chiba-ken 278-8510 Japan.

出版信息

Chem Sci. 2024 Sep 6;15(39):16025-33. doi: 10.1039/d4sc03978e.

Abstract

Highly efficient water splitting under visible light irradiation was achieved using Ir, Sb, and Al-codoped SrTiO of a single particulate metal oxide photocatalyst by a solid-state reaction followed by flux treatment using SrCl and loading of a RhCrO cocatalyst. The photocatalytic activity was improved by AlO addition to the flux treatment, and doping of small amounts of Ir and Sb. It is notable that the water splitting over the photocatalyst proceeded with response to visible light up to 660 nm. This response wavelength is the longest compared with previously reported single particulate visible-light-driven photocatalysts for water splitting. The apparent quantum yield at 420 nm of the optimized photocatalyst was 0.73%. This photocatalyst was active for solar water splitting and gave 0.33% solar-to-hydrogen energy conversion efficiency (STH). Notably, water splitting proceeded giving 0.035% STH under visible light ( > 440 nm) in a solar spectrum. Additionally, Rh, Ru, and Cr-doped SrTiO photocatalysts were also successfully developed for highly efficient water splitting under visible light irradiation by application of the strategies of small amounts of doping, flux treatment with SrCl with AlO addition, and loading of a RhCrO cocatalyst.

摘要

通过固态反应制备了铱、锑和铝共掺杂的单颗粒金属氧化物光催化剂SrTiO,并使用SrCl进行助熔剂处理以及负载RhCrO助催化剂,从而在可见光照射下实现了高效的水分解。通过在助熔剂处理中添加AlO以及掺杂少量的铱和锑,提高了光催化活性。值得注意的是,光催化剂上的水分解对高达660 nm的可见光有响应。与先前报道的用于水分解的单颗粒可见光驱动光催化剂相比,该响应波长是最长的。优化后的光催化剂在420 nm处的表观量子产率为0.73%。该光催化剂对太阳能水分解具有活性,太阳能到氢能的能量转换效率(STH)为0.33%。值得注意的是,在太阳光谱中可见光(>440 nm)下,水分解的STH为0.035%。此外,通过应用少量掺杂、添加AlO的SrCl助熔剂处理以及负载RhCrO助催化剂的策略,还成功开发了铑、钌和铬掺杂的SrTiO光催化剂用于可见光照射下的高效水分解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccf0/11463295/d13d164e5871/d4sc03978e-f1.jpg

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