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Band engineering of layered oxyhalide photocatalysts for visible-light water splitting
被引:8
|作者:
Kato, Daichi
[1
]
Suzuki, Hajime
[1
]
Abe, Ryu
[1
]
Kageyama, Hiroshi
[1
]
机构:
[1] Kyoto Univ, Grad Sch Engn, Dept Energy & Hydrocarbon Chem, Nishikyo Ku, Kyoto 6158510, Japan
关键词:
OXYNITRIDE TAON PHOTOANODE;
BISMUTH OXYHALIDES;
WIDE-RANGE;
BI4MO8X M;
SILLEN;
OXIDE;
OXYCHLORIDE;
TEMPERATURE;
FABRICATION;
BI4NBO8CL;
D O I:
10.1039/d4sc02093f
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
The band structure offers fundamental information on electronic properties of solid state materials, and hence it is crucial for solid state chemists to understand and predict the relationship between the band structure and electronic structure to design chemical and physical properties. Here, we review layered oxyhalide photocatalysts for water splitting with a particular emphasis on band structure control. The unique feature of these materials including Sill & eacute;n and Sill & eacute;n-Aurivillius oxyhalides lies in their band structure including a remarkably high oxygen band, allowing them to exhibit both visible light responsiveness and photocatalytic stability unlike conventional mixed anion compounds, which show good light absorption, but frequently encounter stability issues. For band structure control, simple strategies effective in mixed-anion compounds, such as anion substitution forming high energy p orbitals in accordance with its electronegativity, is not effective for oxyhalides with high oxygen bands. We overview key concepts for band structure control of oxyhalide photocatalysts such as lone-pair interactions and electrostatic interactions. The control of the band structure of inorganic solid materials is a crucial challenge across a wide range of materials chemistry fields, and the insights obtained by the development of oxyhalide photocatalysts are expected to provide knowledge for diverse materials chemistry. In the past decade, layered oxyhalide photocatalysts have evolved through diverse layer stacking structures. This review outlines the design principles of their band structures, drawing insights from systematic studies of this family.
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页码:11719 / 11736
页数:18
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