
Position:Postdoctor(博后)
Research area:连续流合成;材料化工
E-mail:[email protected]; [email protected]
科研项目
· 江西师范大学博后科研项目
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科研成果
[9] Fei-Feng Mao, Yu-Hua Dong, Yan Zhou*, Ming-Shuai Sun, Wei Hui* and Duan-Jian Tao*. Sustainable repurpose of waste melamine foam into bifunctional catalysts for efficient CO2 capture and conversion. Materials Today Energy, 2024, 45, 101677.
[8] Fei-Feng Mao, Wen-Qiang Gong, Song Han, Yan Zhou, Ming-Shuai Sun*, Zhang-Min Li and Duan-Jian Tao*. Facile synthesis of N-benzylanilines via the amination of toluene over a cobalt-based catalyst. Molecular Catalysis, 2024, 555: 113912.
[7] Fei-Feng Mao, Yi-An Wang, Yan Zhou*, Ming-Shuai Sun, Wei Hui* and Duan-Jian Tao. Ultralow loading Fe on N-doped carbon nanospheres for anaerobic cleavage of C–C bonds in biomass vicinal diols. ACS Applied Nano Materials, 2024, 7, 19386−19396.
[6] Fei-Feng Mao, Yan Zhou, Wen-Shuai Zhu, Xiao-Yan Sang, Zhang-Min Li, and Duan-Jian Tao*. Synthesis of guanidinium-based poly(ionic liquids) with nonporosity for highly efficient SO2 capture from flue gas. Industrial & Engineering Chemistry Research, 2021, 60, 5984-5991.
[5] Fei-Feng Mao, Duan‑Jian Tao, Wen-Guang, Xian-Xiang Liu. Highly efficient Conversion of Renewable Levulinic Acid to n-Butyl Levulinate Catalyzed by Sulfonated Magnetic Titanium Dioxide Nanotubes. Catalysis Letters, 2020: 1-7.
[4] Xu Liu, Fei-Feng Mao, Zhang-Min Li, Zhao-Hui Xu, Xue-Jun Shu, Jin-Peng Mi, Yan Zhou* and Duan-Jian Tao. Solidothermal synthesis of nitrogen-decorated, ordered mesoporous carbons with large surface areas for efficient selective capture and separation of SO2. Chemical Engineering Journal, 2022, 431: 134142.
[3] Zhang-Min Li, Shu-Xian Zhu, Fei-Feng Mao, Yan Zhou, Wen-shuai Zhu and Duan-Jian Tao*. CTAB-controlled synthesis of phenolic resin-based nanofiber aerogels for highly efficient and reversible SO2 capture. Chemical Engineering Journal, 2022, 431: 133715.
[2] Wei Hui, Xin-Yi Xu, Fei-Feng Mao, Ling Shi and Hai-Jun Wang*. N/O-rich multilayered ultramicroporous carbon for highly efficient capture and conversion of CO2 under atmospheric conditions. Sustainable Energy & Fuels, 2022, 6(13): 3208- 3219.
[1] Jing-Jing Luo, Ming-Shuai Sun*, Boyuan Tang, Yan Zhou, Wen-Ting Chen, Wen-Qiang Gong, Song Han, Fei-Feng Mao, Zhang-Min Li, and Duan-Jian Tao*, Solvent-Controlled Product Distribution in Vanillin Hydrogenation over a N-Doped Carbon-Supported Nickel Catalyst, Industrial & Engineering Chemistry Research, 2023, 62, 23, 9134-9143.



