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Carbon quantum dot supported semiconductor photocatalysts for efficient degradation of organic pollutants in water: A review

机译:碳量子点支持的半导体光催化剂,用于有效降解水中有机污染物:综述

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摘要

Semiconductor photocatalyst mediated advanced oxidation processes are regarded as one of the most efficient technologies to mitigate organic pollutants in water. However, poor activity under visible light and the recombination of photogenerated electron and hole pairs hinder large scale applicability of semiconductor photocatalysts for water purification. The modification of semiconductor photocatalysts with carbon quantum dots (CQDs) is of high importance due to low toxicity, aqueous stability, enhanced surface area, economic feasibility, good biocompatibility and chemical inertness of CQDs. In this review, we highlight strategies to improve the activity of conventional semiconductor photocatalysts via coupling with CQDs. The enhanced photocatalytic activity of CQD modified narrow and wide band gap photocatalysts is due mainly to up-conversion photoluminescence (UPCL) and the electron reservoir properties of CQDs, while in the case of Z-scheme photocatalysts CQDs act as an electron mediator. Finally, a conclusive outlook and suggested research directions are provided to address challenges such as the inadequate separation of photoinduced charge carriers. (C) 2019 Elsevier Ltd. All rights reserved.
机译:半导体光催化剂介导的先进氧化过程被认为是减轻水中有机污染物的最有效的技术之一。然而,可见光下的可见光差和光发性电子和孔对的重组阻碍了半导体光催化剂的大规模适用性用于水净化。由于低毒性,水性稳定性,增强的表面积,经济可行性,良好的CQDS的良好的生物相容性,具有碳量子点(CQDS)的半导体光催化剂的改变具有高度的重要性。在本文中,我们突出了通过与CQD耦合来改善常规半导体光催化剂的活性的策略。 CQD改性窄和宽带隙光催化剂的增强的光催化活性主要是由于CQD的上转换光致发光(UPCL)和CQD的电子储层性能,而在Z形方案光催化剂CQDS作为电子介体的情况下。最后,提供了一个决定性的前景和建议的研究方向,以解决光抑制电荷载体的分离不足之类的挑战。 (c)2019 Elsevier Ltd.保留所有权利。

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