丁陈辉
博士讲师
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研究方向:
多孔材料、静电纺丝纤维、三维多孔海绵及其环境水修复
男,汉族,1993年12月
个人简介概括:
主要从事多孔材料在环境水修复方面研究。参与国家自然科学基金1项、主持江西师范大学高层次人才引进人才项目1项。以第一作者(含共一)在Angew. Chem. Int. Ed.,Adv. Funct. Mater,J. Mater. Chem. A,Eur. Poly. J.等国际期刊发表SCI论文6篇,论文被引500余次。
联系方式:
地址:方荫楼4-4313
邮箱:chenhui.ding@jxnu.edu.cn
本科生教学及研究生招生方向:
硕士生:080500材料科学与工程 085600材料与化工
研究领域:多孔材料、静电纺丝纤维、三维多孔海绵及其环境水修复
教育与工作经历:
2012.09-2016.07:齐齐哈尔大学化学与化学工程学院,化学工程与工艺,学士
2016.09-2019.07:江西师范大学,材料化学与物理,硕士
2019.11-2024.11:德国拜罗伊特大学,自然科学博士,师从Seema Agarwal教授
2025.07至今: 江西师范大学化学工程学院,讲师
代表性论文:
1.Chenhui Ding,Yingying Du, TamaraFischer,JanaTimm, RolandMarschall, JürgenSenker,SeemaAgarwal, Liquid-liquid-solid interfacial polymerization approach to rapid fabrication oflarge-sizedself-standing structured COF membranes, Journal of Materials Chemistry A, 2025,13(26): 20688-20696.
2.Chenhui Ding,Yingying Du, TamaraFischer,JürgenSenker,SeemaAgarwal,Ultra-Low Density Covalent Organic Framework Sponges withExceptional Compression and Functional Performance,Angewandte Chemie International Edition, e202502513.
3. Chenhui Ding,Yingying Du,SeemaAgarwal, Open-Cell Robust COF-Nanowire Network Spongesas Sustainable Adsorbent and Filter, Advanced Functional Materials, 2023, 34(3), 2309938.
4. Chenhui Ding, Marion Breunig, Jana Timm, Roland Marschall, Jürgen Senker, Seema Agarwal, Flexible, Mechanically Stable, Porous Self-Standing Microfiber Network Membranes of Covalent Organic Frameworks: Preparation Method and Characterization, Advanced Functional Materials, 2021, 31(49), 2106507.
5. Xiaoping Zhou1, Chenhui Ding1, Chunyun Cheng, Shuwu Liu, Gaigai Duan, Wenhui Xu, Kunming Liu, Haoqing Hou, Mechanical and Thermal Properties of Electrospun Polyimide/rGO Composite Nanofibers via In-situ Polymerization and In-situ Thermal Conversion, European Polymer Journal, 2020, 141, 110083.
6. Chenhui Ding, Hong Fang, Gaigai Duan, Yan Zou, Shuiliang Chen, Haoqing Hou, Investigating the Draw Ratio and Velocity of an Electrically Charged Liquid Jet During Electrospinning. RSC advances, 2019, 9(24), 13608-13613.
主持项目情况:
江西师范大学,高层次人才启动基金,2025-9-1至2030-9-1 (20万元,在研)
