首页> 外文期刊>Materials Research Bulletin >Veteran cupric oxide with new morphology and modified bandgap for superior photocatalytic activity against different kinds of organic contaminants (acidic, azo and triphenylmethane dyes)
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Veteran cupric oxide with new morphology and modified bandgap for superior photocatalytic activity against different kinds of organic contaminants (acidic, azo and triphenylmethane dyes)

机译:具有新形态和改进带隙的高级氧化铜,对不同种类的有机污染物(酸性,偶氮和三苯基甲烷染料)具有优异的光催化活性

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摘要

We firstly describe a simple synthesis technique for the bandgap tailored cupric oxide (BT-CuO) with nanosphere morphology. The bandgap modification (from 2.2 to 2.7 eV) was successfully achieved without using any solid support, porous materials or dopants. Oxygen defects produced in the crystal lattice caused by the temperature changed the bandgap. BT-CuO showed drastically higher activity (similar to 1.5 fold) than the wet chemically synthesized CuO (WC-CuO) and also significantly faster than the previously reported CuO systems. The reaction kinetics, degradation mechanism and catalyst stability as well as the roles of bandgap tailoring in photoreaction were comprehensively studied. The prevention of the electron-hole pair recombination was strongly evidenced by photoluminescence studies. Responsible species for the degradation was identified by trapping experiments. The crucial role of bandgap tailoring for the improved photocatalytic activity was attributed to the superior electron transfer ability, enhanced light harvesting and boosted catalytic active sites. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们首先描述一种具有纳米球形态的带隙量身定制的氧化铜(BT-CuO)的简单合成技术。在不使用任何固体载体,多孔材料或掺杂剂的情况下,成功实现了带隙修饰(从2.2到2.7 eV)。温度引起的晶格中产生的氧缺陷改变了带隙。 BT-CuO的活性比湿化学合成的CuO(WC-CuO)显着更高(约1.5倍),并且比以前报道的CuO系统快得多。全面研究了反应动力学,降解机理和催化剂稳定性,以及能隙调整在光反应中的作用。通过光致发光研究有力地证明了防止电子-空穴对重组。通过诱集实验确定了负责降解的物种。带隙剪裁对于提高光催化活性的关键作用归因于优异的电子转移能力,增强的光收集能力和增强的催化活性位。 (C)2016 Elsevier Ltd.保留所有权利。

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