光催化
可见光谱
氧气
材料科学
光化学
化学工程
催化作用
化学
光电子学
有机化学
工程类
作者
Mandeep Singh,Deshetti Jampaiah,Ahmad Esmaielzadeh Kandjani,Ylias M. Sabri,Enrico Della Gaspera,Philipp Reineck,Martyna Judd,Julien Langley,Nicholas J. Cox,Joel van Embden,Edwin Mayes,Brant C. Gibson,Suresh K. Bhargava,Rajesh Ramanathan,Vipul Bansal
出处
期刊:Nanoscale
[The Royal Society of Chemistry]
日期:2018-01-01
卷期号:10 (13): 6039-6050
被引量:123
摘要
Oxygen vacancies in inorganic semiconductors play an important role in reducing electron-hole recombination, which may have important implications in photocatalysis. Cuprous oxide (Cu2O), a visible light active p-type semiconductor, is a promising photocatalyst. However, the synthesis of photostable Cu2O enriched with oxygen defects remains a challenge. We report a simple method for the gram-scale synthesis of highly photostable Cu2O nanoparticles by the hydrolysis of a Cu(i)-triethylamine [Cu(i)-TEA] complex at low temperature. The oxygen vacancies in these Cu2O nanoparticles led to a significant increase in the lifetimes of photogenerated charge carriers upon excitation with visible light. This, in combination with a suitable energy band structure, allowed Cu2O nanoparticles to exhibit outstanding photoactivity in visible light through the generation of electron-mediated hydroxyl (OH˙) radicals. This study highlights the significance of oxygen defects in enhancing the photocatalytic performance of promising semiconductor photocatalysts.
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