光催化
半导体
材料科学
降级(电信)
光致发光
纳米技术
量子点
碳纤维
污染物
载流子
水溶液
光化学
化学
光电子学
催化作用
计算机科学
有机化学
复合数
复合材料
电信
作者
S.C. Sharma,Vishal Dutta,Pardeep Singh,Pankaj Raizada,Abolfazl Rahmani-Sani,Ahmad Hosseini–Bandegharaei,Vijay Kumar Thakur
标识
DOI:10.1016/j.jclepro.2019.04.292
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.
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