光降解
催化作用
复合数
煅烧
密度泛函理论
降级(电信)
甲基橙
材料科学
催化效率
量子点
化学工程
量子效率
光催化
化学
光化学
复合材料
纳米技术
光电子学
计算化学
有机化学
计算机科学
工程类
电信
作者
Dongao Xie,Changxin Tang,Dan Li,Jiren Yuan,Feigao Xu
标识
DOI:10.1021/acs.jpcc.3c08322
摘要
FeOCl has attracted much attention for its good photo-Fenton properties. However, there are still some limitations to the removal efficiency of organic pollutants. Visible-light-responsive FeOCl/CdS quantum dot composites were prepared by calcination to overcome their flaws, and their catalytic activity was explored by the degradation of acid orange II (AO-II). The experimental results showed that the FeOCl/CdS composites exhibited better catalytic performance than pure components. The F1Cd0.5 composite (mass ratio of FeOCl to CdS is 1:0.5) achieved 98.5% removal efficiency of AO-II, which is 14.8 times higher than that of FeOCl+CdS under similar experimental conditions; moreover, the F1Cd0.5 composite still exhibits a high stability after five cycles. According to the characterization and experimental results with density functional theory calculations together, it is proposed that the type II carrier transfer-separation mechanism plays a leading role in enhancing the photodegradation performance of the photo-Fenton catalysts. This study provides a new idea to further improve the catalytic efficiency of the photo-Fenton technology for organic pollutant degradation.
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