董求兵 硕士生导师
加盟团队:曾明华教授团队
办公室:花津校区学苑南楼5号楼220
E-mail: dongqiubing@ahnu.edu.cn
学习与工作经历
◆ 2023.08-至今:安徽师范大学,化学与材料科学学院,讲师
◆ 2018.09-2023.06:南京工业大学,化工学院,工学博士
◆ 2014.09 -2018.06:黄山学院,化工学院,工学学士
研究兴趣
◆ 功能配位聚合物设计与制备
◆ 能源小分子气体分离
◆ 玻璃态转变
◆ 气体分离膜
主持与参与项目
◆ 安徽师范大学博士启动基金项目,2023-2028,主持在研
◆ 南京工业大学优秀博士学位论文培育计划,2020-2023,主持结题
◆ 国家自然科学基金面上项目,2021-2025,参与在研
代表性论文
1. Qiubing Dong, Yuhang Huang, Zhiyong Lu, Zhaoxu Wang, Cheng Gu, Jingui Duan*, Junfeng Bai*. Confining water nanotubes in a Cu10O13-based metal-organic framework for propylene/propane separation with record-high selectivity. Journal of the American Chemical Society, 2023, 145(14), 8043-8051. ESI highly cited paper.
2. Qiubing Dong#, Xin Zhang#, Shuang Liu#, Rui-Biao Lin, Yanan Guo, Yunsheng Ma, Akira Yonezu, Rajamani Krishna, Gongpin Liu, Jingui Duan*, Ryotaro Matsuda, Wanqin Jin, Banglin Chen*. Tuning gate-opening of a flexible metal-organic framework for ternary gas sieving separation. Angewandte Chemie International Edition, 2020, 59(50), 22756-22762. ESI highly cited paper.
3. Jian Li, Jia-Xin Wu, Tao Liu, Jian Yang, Mei-Ling Wei, Chuang Yang, Qiubing Dong, ZhengYin*, Mohamedally Kurmoo, Ming-Hua Zeng*. Multiple structural and phase transformations of MOF and selective hydrocarbon gas separation in its amorphous, glass phase states. Angewandte Chemie International Edition, 2024, e202411150.
4. Qiubing Dong, Jingmeng Wan, Huanhao Chen, Yuhang Huang, and Jingui Duan*. Highly Efficient CO2 Capture from Wet–Hot Flue Gas by a Robust Trap-and-Flow Crystal. ACS Applied Materials & Interfaces, 2023, 15(33), 39606-39613.
5. Qiubing Dong, Yuhang Huang, Kim Hyeon-Deuk, I-Ya Chang, Jingmeng Wan, Changlin Chen, Jingui Duan*, Wanqin Jin, Susumu Kitagawa*. Shape- and size-dependent kinetic ethylene sieving from a ternary mixture by a trap-and-flow channel crystal. Advanced Functional Materials, 2022, 32(38), 2203745.
6. Qiubing Dong#, Yanan Guo#, Haifei Cao, Suna Wang, Ryotaro Matsuda, Jingui Duan*. Accelerated C2H2/CO2 separation by a Se-functionalized porous coordination polymer with low binding energy. ACS Applied Materials & Interfaces, 2020, 12(3), 3764-3772.
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