过氧二硫酸盐
污染物
化学
氧化还原
金属
配体(生物化学)
水溶液中的金属离子
可见光谱
环境修复
光化学
离子
降级(电信)
环境化学
催化作用
无机化学
材料科学
污染
有机化学
光电子学
计算机科学
电信
生物化学
受体
生态学
生物
作者
Renli Yin,Yanxi Chen,Jiayue Hu,Gang Lu,Lixi Zeng,Wonyong Choi,Mingshan Zhu
标识
DOI:10.1016/j.apcatb.2020.119663
摘要
The major challenge of Fenton and Fenton-like technologies is promoting the effective transformation of Fe3+ to Fe2+. Photoinduced ligand-to-metal charge transfer (LMCT) enables charge to transfer effectively from the complex ligand to metal ions for the subsequent redox reactions. This study shows that photoactivated LMCTs relying on internal charge transfers occurred from the pollutant complex to the Fe3+ center and followed the in situ transformation of Fe3+ to Fe2+ without the addition of other ligands or agents. Using the antibiotic pollutant sulfamethoxazole (SMX), a direct Fe-SMX complex is formed and enables visible light to be used to activate peroxydisulfate (PDS) by Fe3+ for the rapid degradation of SMX at a rate 6.5-times higher than that observed by the conventional Fe2+/PDS system. This study outlines a new and cost-effective LMCT activation approach and broadens our knowledge of the ability of Fe3+ to be applied in Fenton-like reactions for environmental remediation.
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