论文著作:
[1]Self-supporting MnOx nanoparticles on loofah-sponge-derived carbon felt for electroassisted catalytic wet air oxidation of water contaminants, ACS EST Engg., 2021, 1, 173-182, Sun, M.; Liu, H.H.; Tao, X.F.; Zhai, L.F*, Wang, S*.
[2]A generalized kinetic model for electro-assisted catalytic wet air oxidation of triclosan on Ni@NiO/graphite electrode, Chem. Eng. Sci. 2020, 222, 115696, Sun, M.; Hong, X.H.; Tao, X.F.; Zhai, L.F*.
[3]Catalytic behaviors of manganese oxides in electro-assisted catalytic air oxidation reaction: Influence of structural properties, Appl. Surf. Sci., 2020, 511, 145536, Sun, M.; Fang, L.M.; Hong, X.H.; Zhang, F.; Zhai, L.F*, Wang, S*.
[4]Degradation of bisphenol A by electrocatalytic wet air oxidation process: Kinetic modeling, degradation pathway and performance assessment, Chem. Eng. J., 2020, 387, 124124, Sun, M.; Liu, H.H.; Zhang, Y.; Zhai, L.F*.
[5] Bioelectrochemical element conversion reactions towards generation of energy and value-added chemicals, Prog. Energ. Combust., 2020, 77, 100814, Sun, M.; Zhai, LF.; Mu, Y.*; Yu, HQ.*
[6] Electro-assisted catalytic wet air oxidation of organic pollutants on a MnO@C/GF anode under room condition, Appl. Catal. B-Environ., 2019, 256: 117822, Zhai, L.F.; Duan, M.F.; Qiao, M.X.; Sun, M.*, Wang, S*.
[7]Room-temperature air oxidation of organic pollutants via electrocatalysis by nanoscaled Co-CoO on graphite felt anode, Environ. Int., 2019, 131: 104977, Sun, M.; Zhang,Y.; Liu, H.H.; Zhang, F.; Zhai, L.F.*, Wang, S*.
[8]Excellent performance of electro-assisted catalytic wet air oxidation of refractory organic pollutants, Water Res., 2019, 158: 313-321, Sun, M.; Zhang, Y.; Kong, S.Y.; Zhai, L.F.*, Wang S*.
[9]Electro-activation of O2 on MnO2/graphite felt for efficient oxidation of water contaminants under room condition, Chemosphere, 2019, 234: 269-276, Sun, M.*; Fang, L.M.; Liu, J.Q.; Zhang, F.; Zhai, L.F*.
[10]Facile synthesis of Co-N-rGO composites as an excellent electrocatalyst for oxygen reduction reaction, Chem. Eng. Sci., 2019, 194, 45-53, Zhai, L.F.*; Kong, S.Y.; Zhang, H.; Tian, W.; Sun, M.; Sun, H., Wang, S*.
[11]Air oxidation of pollutants on cathodic nickel@nickel oxide/graphite felt under room condition, J. Clean. Prod., 2019, 224: 256-263, Zhai, L.F.*; Kong, S.Y.; Duan, M.F.; Sun, M*.
[12]Selective cleavage of C-O bond in diaryl ether contaminants via anodic oxidation. ACS Sustain, Chem. Eng., 2019, 7: 18414-18420, Zhai, L.F.; Duan, M.F.; Guo, H.Y.; Zhang, F.*; Sun, M*.
[13]Surface modification of graphite support as an effective strategy to enhance the electro-Fenton activity of Fe3O4/graphite composites in situ fabricated from acid mine drainage using an air-cathode fuel cell, ACS Sustain. Chem. Eng., 2019, 7: 8367-8374, Zhai, L.F.*; Sun, Y.M.; Guo, H.Y.; Sun, M*.
[14]Corrosion of graphite electrode in electrochemical advanced oxidation processes: Degradation protocol and environmental implication, Chem. Eng. J., 2018, 344, 410-418, Qiao, M.X.; Zhang, Y.; Zhai, L.F.*; Sun, M*.
[15]In situ fabrication of electro-Fenton catalyst from Fe2+ in acid mine drainage: influence of coexisting metal cations, ACS Sustain. Chem. Eng., 2018, 6 (11): 14154-14161, Sun, Y.M.; Zhai, L.F. *; Duan, M.F.; Sun, M*.