作者
Hong-Zhi Liu, Xiao-Xuan Shu, Mingjie Huang, Bing-Bing Wu, Jie-Jie Chen, Xi-Sheng Wang, Hui-Lin Li, Han-Qing Yu
发表日期
2024/3/14
期刊
Nature Communications
卷号
15
期号
1
页码范围
2327
出版商
Nature Publishing Group UK
简介
Polymerization-driven removal of pollutants in advanced oxidation processes (AOPs) offers a sustainable way for the simultaneous achievement of contamination abatement and resource recovery, supporting a low-carbon water purification approach. However, regulating such a process remains a great challenge due to the insufficient microscopic understanding of electronic structure-dependent reaction mechanisms. Herein, this work probes the origin of catalytic pollutant polymerization using a series of transition metal (Cu, Ni, Co, and Fe) single-atom catalysts and identifies the d-band center of active site as the key driver for polymerization transfer of pollutants. The high-valent metal-oxo species, produced via peroxymonosulfate activation, are found to trigger the pollutant removal via polymerization transfer. Phenoxyl radicals, identified by the innovative spin-trapping and quenching approaches, act as the key …
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