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Paper Publications
霍新喜
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Paper Publications
[1] 朱乐东. Metabolic activation mechanism of 2,2′,3,3′,6,6′-hexachlorobiphenyl (PCB136) by cytochrome P450 2B6: A QM/MM approach. Science of The Total Environment , 776, 2021.
[2] 朱乐东. Metabolic activation mechanism of 2,2′,3,3′,6,6′-hexachlorobiphenyl (PCB136) by cytochrome P450 2B6: A QM/MM approach. Science of The Total Environment , 776, 145579, 2021.
[3] 卫园园. The reaction of Criegee intermediates with formamide and its implication to atmospheric aerosols. CHEMOSPHERE Journal, 296, 2022.
[4] 李磊. Gas-phase and aqueous-surface reaction mechanism of Criegee radicals with serine and nucleation of products: A theoretical study. Chemosphere, 2021.
[5] 卫园园. The reaction of Criegee intermediates with formamide and its implication to atmospheric aerosols. Chemosphere, 2022.
[6] 丁喆正. Understanding the atmospheric fate of triphenylene: The oxidation mechanism initiated by OH radicals. CHEMICAL PHYSICS LETTERS Journal, 785, 2021.
[7] 汪升明. Atmospheric oxidation of dichlorodiphenyltrichloroethane (DDT) initiated by OH and NO3 radicals: A quantum chemical investigation. CHEMICAL PHYSICS LETTERS Journal, 787, 2022.
[8] 卫园园. Theoretical study of the reaction mechanism between Criegee intermediates and hydroxyl radicals in the presence of ammonia and amine. CHEMOSPHERE Journal, 287, 2022.
[9] 李磊. Gas-phase and aqueous-surface reaction mechanism of Criegee radicals with serine and nucleation of products: A theoretical study. CHEMOSPHERE Journal, 280, 2021.
[10] 李磊. Gas-phase and aqueous-surface reaction mechanism of Criegee radicals with serine and nucleation of products: A theoretical study. CHEMOSPHERE Journal, 280, 2021.
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