Engineering oxygen vacancy-rich CoFe2O4@C core-shell microreactors via defect-morphology dual synergy for ultrafast peroxymonosulfate activationOA
Engineering oxygen vacancy-rich CoFe2O4@C core-shell microreactors via defect-morphology dual synergy for ultrafast peroxymonosulfate activation
Long Sui;Zheng-Tao Dong;Yuan Tian;Lei Ma;Cheng-Gang Niu;Ming Yan;Jia-Jia Wang
College of Environmental Science and Engineering,Key Laboratory of Environmental Biology Pollution Control,Ministry of Education,Hunan University,Changsha,410082,ChinaCollege of Environmental Science and Engineering,Key Laboratory of Environmental Biology Pollution Control,Ministry of Education,Hunan University,Changsha,410082,ChinaCollege of Environmental Science and Engineering,Key Laboratory of Environmental Biology Pollution Control,Ministry of Education,Hunan University,Changsha,410082,ChinaCollege of Environmental Science and Engineering,Key Laboratory of Environmental Biology Pollution Control,Ministry of Education,Hunan University,Changsha,410082,ChinaCollege of Environmental Science and Engineering,Key Laboratory of Environmental Biology Pollution Control,Ministry of Education,Hunan University,Changsha,410082,ChinaCollege of Environmental Science and Engineering,Key Laboratory of Environmental Biology Pollution Control,Ministry of Education,Hunan University,Changsha,410082,ChinaCollege of Environmental Science and Engineering,Key Laboratory of Environmental Biology Pollution Control,Ministry of Education,Hunan University,Changsha,410082,China
CoFe2O4Oxygen vacancyd-band centersPeroxymonosulfateTheoretical calculations
CoFe2O4Oxygen vacancyd-band centersPeroxymonosulfateTheoretical calculations
《绿色能源与环境(英文)》 2026 (3)
842-855,14
This work was financially supported by the National Key R&D Program of China(2023YFF0724403),National Natural Science Foundation of China(U22A20606,52500200).
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