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    Assistant Professor Jinfeng Han

    International Center of Future Science, Jilin University
    E-mail: jfhan@jlu.edu.cn

    Biography
    Dr. Jinfeng Han received his B.S. degree from Southwest University of Science and Technology in 2013, and obtained his M.S. and Ph.D degree from Tianjin University in 2016 and 2020, respectively. From 2020 to 2024, he was engaged in postdoctoral research at Jilin University under the tutelage of academician Jihong Yu. Since 2024 fall, he has been an assistant professor in the International Center of Future Science, Jilin University. His main research interests include low-cost synthesis of zeolites and the designed synthesis and application of zeolitic catalysts in environment fields. He has published a series of articles in well recognized journals, including JACS, Angew Chem. Int. Ed., CCS Chem., Green Chem., etc.

    Education
    2020  Ph.D., Environmental Engineering, School of Environmental Science and Engineering, Tianjin University

    2016  M.S., Environmental Engineering, School of Environmental Science and Engineering, Tianjin University

    2013  B.S., Environmental Engineering, School of Environment and Resource, Southwest University of Science and Technology

    Positions
    2024-          Assistant Professor, International Center of Future Science, Jilin University

    2020-2024  Postdoctoral Fellow, College of Chemistry, Jilin University

    Research Interest
    Low-cost synthesis of zeolites, designed synthesis and application of zeolitic catalysts in environment fields

    Selected Publications
    1. Han, J. F.+; Li, J. Y.+; Zhao, W. R.+; Li, L.; Chen, M. Y.; Ge, X.; Wang, S.; Liu, Q. L.*; Mei, D. H.*; Yu, J. H.*, Cu-OFF/ERI zeolite: Intergrowth structure synergistically boosting selective catalytic reduction of NOX with NH3, J. Am. Chem. Soc., 2024, 146, 7605-7615.

    2. Han, J. F.; Li, J. Y.; Bai, Y.; Wei, Y. Z.; Li, D.; Yan, W. F.*; Yu, J. H.*, Cocrystallized zeolite interface boosting the hydrothermal stability of Cu-CHA/OFF-ERI catalysts, CCS Chem., 2024. DOI: 10.31635/ccschem.024.202404558.

    3. Wang, Y. Z.+; Han, J. F.+; Chen, M. Y.+; Lv W. T.; Meng, P. T.; Gao, W.; Meng, X. J.; Fan, W. B.; Xu, J.*; Yan, W. F.*; Yu, J. H.*, Low-silica Cu-CHA zeolite enriched with Al pairs transcribed from silicoaluminophosphate seed: Synthesis and ammonia selective catalytic reduction performance, Angew. Chem. Int. Ed., 2023, 62, e202306174.

    4. Han, J. F.; Jin, X. T.; Song, C. F.; Bi, Y. L.; Liu, Q. L.*; Liu, C. X.*; Ji, N.; Lu, X. B.; Ma, D. G.; Li, Z. G., Rapid synthesis and NH3-SCR activity of SSZ-13 zeolite via coal gangue, Green Chem., 2020, 22, 219-229.

    5. Han, J. F.; Ha, Y.; Guo, M. Y.; Zhao, P. P.; Liu, Q. L.*; Liu, C. X.*; Song, C. F.; Ji, N.; Lu, X. b.; Ma, D. G.; Li, Z. G., Synthesis of zeolite SSZ-13 from coal gangue via ultrasonic pretreatment combined with hydrothermal growth method, Ultrason. Sonochem., 2019, 59, 104703.