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Triangle Cl−Ag1−Cl Sites for Superior Photocatalytic Molecular Oxygen Activation and NO Oxidation of BiOCl
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2023-10-24 , DOI: 10.1002/anie.202314243
Furong Guo 1 , Chengliang Mao 2 , Chuan Liang 1 , Pan Xing 1 , Linghao Yu 1 , Yanbiao Shi 3 , Shiyu Cao 1 , Fanyu Wang 1 , Xiao Liu 1 , Zhihui Ai 1 , Lizhi Zhang 1, 3
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2023-10-24 , DOI: 10.1002/anie.202314243
Furong Guo 1 , Chengliang Mao 2 , Chuan Liang 1 , Pan Xing 1 , Linghao Yu 1 , Yanbiao Shi 3 , Shiyu Cao 1 , Fanyu Wang 1 , Xiao Liu 1 , Zhihui Ai 1 , Lizhi Zhang 1, 3
Affiliation
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Triangle Cl−Ag1−Cl sites can selectively promote one-electron molecular oxygen activation to superoxide radicals for enhanced NO photooxidation of BiOCl, producing NO3− with a strong bidentate adsorption configuration to avoid unfavorable photolysis.
中文翻译:
三角形 Cl−Ag1−Cl 位点可实现 BiOCl 的卓越光催化分子氧活化和 NO 氧化
三角形Cl−Ag 1 -Cl位点可以选择性地促进单电子分子氧活化为超氧自由基,从而增强BiOCl的NO光氧化,产生具有强双齿吸附构型的NO 3 -以避免不利的光解作用。
更新日期:2023-10-24
中文翻译:

三角形 Cl−Ag1−Cl 位点可实现 BiOCl 的卓越光催化分子氧活化和 NO 氧化
三角形Cl−Ag 1 -Cl位点可以选择性地促进单电子分子氧活化为超氧自由基,从而增强BiOCl的NO光氧化,产生具有强双齿吸附构型的NO 3 -以避免不利的光解作用。