污染物
光催化
可再生能源
环境科学
生化工程
催化作用
化学
工程类
生物化学
有机化学
电气工程
作者
Qing Liu,Yujie Zhao,Jingyi Wang,Yilun Zhou,Xiaolu Liu,Mengjie Hao,Zhongshan Chen,Suhua Wang,Hui Yang,Xiangke Wang
标识
DOI:10.1080/10643389.2023.2274259
摘要
Green and clean photocatalytic technology has been extensively applied to degrade environmental pollutants and produce renewable energy, which is an important mean to solve environmental and energy problems. However, limited to the cost and efficiency of photocatalysts, it is difficult to realize large-scale application. In recent years, the single-atom photocatalysts (SAPCs) have added new vitality into this field. SAPCs have the active homogeneous centers, heterogeneous structures, stability, high catalytic activity and selectivity properties. The related researches on its synthesis, characterization and application have become a hot spot in many fields. In this review, the photocatalytic H2 production, CO2 reduction, nitrogen fixation, NOx removal, volatile organic compounds removal, pollutant degradation, reduction of radionuclides and heavy metal ions using SAPCs are reviewed. The advantages and disadvantages of the six kinds of SAPCs substrates are analyzed, and design strategies are carefully summarized. The mechanisms of photocatalysis, isolated-site reactions, photogenerated e−-h+ transfer and the construction of efficient photoactivation cycles are discussed. Finally, the future development trend of SAPCs is prospected. This review will provide a reference for the design of high efficiency SAPCs.
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