个人信息Personal information
- 硕士生导师
- 教师拼音名称:Zhai Linfeng
- 电子邮箱:
- 所在单位:化学与化工学院
- 学历:研究生(博士后)
- 办公地点:升华楼323/429
- 性别:男
- 联系方式:13083401230
- 学位:博士学位
- 职称:副教授
- 在职信息:在职
- 毕业院校:合肥工业大学
- 所属院系:化学与化工学院
- 学科:应用化学
联系方式Contact information
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论文成果
- Zhai L.F. *, Xu J.W., Yu J., Xu T.T., Wang Y., Sun M.*,Role of MnO2 as an activator of molecular oxygen for singlet oxygen production,Sep. Purf. Technol.,2025, 357, 130050.
- Zhai L.F., Xu S.Y., Yu J., Hu Z.J., Sun M., Wang Y., Kinetic selectivity of an electric field-induced nonradical pathway for catalytic oxidation of phenolic pollutants by molecular oxygen, ACS EST Engg., 2024, 4, 2520-2532.
- Sun M., Tang S.N., Chen Z.X., Zhai L.F.*, Xia Y., Wang S.*, Mn-doping-induced Co3O4 structural distortion and facet change for enhanced electro-activation of O2 toward pollutants removal,ACS EST Engg., 2024, 4, 1970-1980.
- Zhai L.F., Hu Y., Xu S.Y., Guo H.Y., Sun M.*, Yu J., Wang Y., Kinetics and mechanism study of dyes degradation in electric field-promoting catalytic wet air oxidation process, J. Environ. Manage., 2023, 338, 117843.
- Sun M., Wang X.Z., Xiong R.Y., Chen X., Zhai L.F.*, Wang S.*, High-performance biochar-loaded MgAl-layered double oxide adsorbents derived from sewage sludge towards nanoplastics removal: Mechanism elucidation and QSAR modeling, Sci. Total Environ. 2023, 901, 165971.
- Zhai L.F.*, Chen Y.Y., Hu Y., Pan Y.X., Sun M., Yu J., Wang Y., Kong W., MOF-derived MnO@C with high activity for electric field-assisted catalytic oxidation of aqueous pollutants, J. Hazard. Mater. 2022, 439, 129670.
- Zhai L.F.*, Chen Z.X., Qi J.X., Sun M.*, Manganese-doped molybdenum oxide boosts catalytic performance of electrocatalytic wet air oxidation at ambient temperature, J. Hazard. Mater. 2022, 428, 128245.
- Sun M., Hu X.T., Liu H.H., Yang B.J., Wang C., Zhai L.F.*, Wang S.*,Bimetal heterointerfaces towards enhanced electro-activation of O2 under room condition, J. Hazard. Mater. 2022, 424, 127271.
- Zhai L.F., Guo H.Y., Chen Y.Y., Sun M.*, Wang S.*,Structure-dependent degradation of pharmaceuticals and personal care products by electrocatalytic wet air oxidation: A study by computational and experimental approaches,Chem. Eng. J. 2021, 423, 130167.
- Sun M., Liu H.H., Tao X.F., Zhai L.F.*, Wang S.*,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.