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缺氧稳定的氧化铜用于增强可见光光催化活性。

Oxygen-deficient photostable CuO for enhanced visible light photocatalytic activity.

机构信息

Ian Potter NanoBioSensing Facility, NanoBiotechnology Research Laboratory, School of Science, RMIT University, Melbourne, VIC 3000, Australia.

Centre for Advanced Materials and Industrial Chemistry, School of Science, RMIT University, Melbourne, VIC 3000, Australia.

出版信息

Nanoscale. 2018 Mar 29;10(13):6039-6050. doi: 10.1039/C7NR08388B.

Abstract

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.

摘要

无机半导体中的氧空位在减少电子-空穴复合方面起着重要作用,这可能对光催化有重要意义。氧化亚铜(Cu2O)是一种可见光活性的 p 型半导体,是一种很有前途的光催化剂。然而,合成富含氧缺陷的光稳定的 Cu2O 仍然是一个挑战。我们报道了一种通过在低温下水解 Cu(i)-三乙胺 [Cu(i)-TEA] 配合物来大规模合成高稳定性 Cu2O 纳米粒子的简单方法。这些 Cu2O 纳米粒子中的氧空位导致光生载流子在可见光激发下的寿命显著增加。这与合适的能带结构相结合,使 Cu2O 纳米粒子能够通过产生电子介导的羟基(OH˙)自由基在可见光下表现出优异的光活性。本研究强调了氧缺陷在提高有前途的半导体光催化剂的光催化性能方面的重要性。

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