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教授
魏海兵
发布时间:2023-02-23    阅读次数:14897
姓 名:
魏海兵
职 称:
教授,博士生导师
职 务:
 
所属系:
高分子系
邮 箱:
hbwei@hfut.edu.cn
电 话:

个人简历

2002年9月–2006年7月,安徽师范大学化学与材料科学学院材料化学专业学习,获理学学士学位;

2006年9月–2011年7月,中国科学院宁波材料技术与工程研究所高分子化学与物理专业学习,获理学博士学位;

2011年7月–2013年12月,北京大学从事博士后研究,博士后;

2017年8月–2018年9月,美国伊利诺伊大学香槟校区,访问学者;

2014年1月–至今,3522vip浦京集团 3522vip浦京集团,副研究员(2014.01)、教授(2021.01)

主要研究领域、方向

硕士生招生专业:材料学(学术型);材料工程(专业型)

博士生招生专业:材料学(学术型);环境科学与工程(学术型)

目前的研究方向:1)用于电化学能量转换的功能高分子材料;2)具有特定结构与形状的高分子的可控合成及功能化;3)开环易位聚合及其功能材料。

主讲本科生课程:1)高分子化学;2)聚合物合成工艺;3)高聚物分子设计。

主讲研究生课程:高分子材料合成与制备。

研究成果(代表性成果)

围绕先进功能高分子材料的可控合成及结构与性能关系研究,并探索其在燃料电池、电解水等电化学能量转换领域的应用。迄今已在Chem. Soc. Rev., Adv. Funct. Mater., Chem. Sci., Mater. Horiz., Chem. Commun., J. Mater. Chem. A, J. Membr. Sci.等国际刊物上发表研究论文40余篇;申请中国发明专利10余项,其中6项已授权。

目前承担科研项目

(1)国家自然科学基金面上项目“碱性膜燃料电池催化层用离聚物的分子设计、效能评估及构效关系研究” (No. 52273205)

(2)国家自然科学基金面上项目“氟碳侧链阴离子交换膜的聚集态结构调控、交联固定及构效关系研究” (No. 51873054)

(3)国家自然科学基金青年科学基金“基于树枝状大分子电解质/嵌段共聚物电解质静电组装的超分子聚合物凝胶” (No. 21404030)

(4)安徽省重大科技攻关“吡唑醚菌酯原药的小试及中试研发及效益评估” (No. 16030701101)

(5)企业委托技术开发项目“高性能阴离子交换膜材料的合成、工程化制备及其在电化学能量转化领域的应用”


获奖及专利情况

获奖:

安徽省科学技术奖二等奖 1项(2017)

授权专利:

授权发明专利6项

著作论文(代表作)

1. Jujia Zhang#, Sian Chen#, Haibing Wei*, Jin Zhang, Haining Wang, Shanfu Lu*, Yan Xiang, “Proton Conductor Confinement Strategy for Polymer Electrolyte Membrane Assists Fuel Cell Operation in Wide-Range Temperature” Adv. Funct. Mater. 2023, 33, No. 2214097.

2. Tao Wang, Yu Zhao, Sheng Wang, Sheng Cheng, Shanzhong Yang, Haibing Wei*, Yunsheng Ding*, “Towards high alkaline stability and fuel cell performance in anion exchange membranes via backbonecation alkylene spacer tuning for quaternized poly(biphenylene alkylene)s” J. Power Sources, 2023, 557, No. 232590.

3. Tao Jiang, Chenxi Wang, Tao Wang, Xuechao Wang, Xiaojuan Wang, Xueliang Li*, Yunsheng Ding, Haibing Wei* “Imidazolium structural isomer pyrazolium: A better alkali-stable anion conductor for anion exchange membranes” J. Membr. Sci., 2022, 660, No. 120843.

4. Tao Jiang#, Cheng Wu#, Yiyang Zhou, Sheng Cheng, Shanzhong Yang, Haibing Wei*, Yunsheng Ding*, Yucheng Wu, “Highly stable poly(p-quaterphenylene alkylene)-based anion exchange membranes” J. Membr. Sci., 2022, 647, No. 120342.

5. Kai Song, Wujin Ye, Xingchen Gao, Huagao Fang*, Yaqiong Zhang, Qi Zhang, Xueliang Li, Shanzhong Yang, Haibing Wei*, Yunsheng Ding*, “Synergy between dynamic covalent boronic ester and boron–nitrogen coordination: strategy for self-healing polyurethane elastomers at room temperature with unprecedented mechanical properties” Mater. Horiz., 2021, 8, 216−223.

6. Yake Yang, Tao Jiang, Lijuan Li, Shuang Zhou, Huagao Fang, Xueliang Li, Haibing Wei*, Yunsheng Ding*, “Chemo-stable poly(quinquephenylene-co-diphenylene piperidinium) ionomers for anion exchange membrane fuel cells” J. Power Sources, 2021, 506, No. 230184.

7. Lijuan Li#, Jujia Zhang#, Tao Jiang, Xiaoqian Sun, Yulu Li, Xueliang Li, Shanzhong Yang, Shanfu Lu*, Haibing Wei*, Yunsheng Ding, “High Ion Conductivity and Diffusivity in the Anion Exchange Membrane Enabled by Tethering with Multication Strings on the Poly(biphenyl alkylene) Backbone” ACS Appl. Energy Mater., 2020, 3, 6268−6279.

8. Haibing Wei*, Yan Li, Sheng Wang, Guoqing Tao, Tie Wang, Sheng Cheng, Shanzhong Yang, Yunsheng Ding*, “Side-chain-type imidazolium-functionalized anion exchange membranes: The effects of additional hydrophobic side chains and their hydrophobicity” J. Membr. Sci., 2019, 579, 219−229.

9. Yan Li, Jujia Zhang, Yang Hua, Shanzhong Yang, Shanfu Lu*, Haibing Wei*, Yunsheng Ding, “Boosting the performance of anion exchange membrane by the formation of well-connected ion conducting channels” Polym. Chem., 2019, 10, 2822−2831.

10. Huiying Liu, Haibing Wei, Jeffrey S. Moore*, “Frontal Ring-Opening Metathesis Copolymerization: Deviation of Front Velocity from Mixing Rules” ACS Macro. Lett., 2019, 8, 846−851.

       11. Jinlei Wang, Xiaojuan Wang, Daoyuan Zu, Yang Hua, Yan Li, Shanzhong Yang, Haibing Wei*, Yunsheng Ding*, “N3-adamantyl imidazolium cations: Alkaline stability assessment and the corresponding comb-shaped anion exchange membranes” J. Membr. Sci., 2018, 545, 116−125.

12. Gongwen Yang, Xiaotong He, Sheng Cheng, Xueliang Li, Shanzhong Yang, Haibing Wei*, Yunsheng Ding*, “A CO2-triggered hydrophobic/hydrophilic switchable polyurethane” Appl. Surf. Sci., 2018, 456, 270−275.

13. Xiaojuan Wang, Ping Wang, Yiyan Sun, Jinlei Wang, Huagao Fang, Shanzhong Yang, Haibing Wei*, Yunsheng Ding*, “A mechanically strong and tough anion exchange membrane engineered with non-covalent modalities” Chem. Commun., 2017, 53, 12369−12372.

14. Ying Chen, Yanping Tao, Jinlei Wang, Shanzhong Yang, Sheng Cheng, Haibing Wei* and Yunsheng Ding*, “Comb-Shaped Guanidinium Functionalized Poly(ether sulfone)s for Anion Exchange Membranes: Effects of the Spacer Types and Lengths” J. Polym. Sci., Part A: Polym. Chem., 2017, 55, 13131321.

15. Haibing Wei, Jinlong Zhang, Nan Shi, Yang Liu, Ben Zhang, Jie Zhang* and Xinhua Wan*. “A recyclable polyoxometalate-based supramolecular chemosensor for efficient detection of carbon dioxide” Chem. Sci., 2015, 6, 72017205.

16. Haibing Wei, Nan Shi, Jinlong Zhang, Yan Guan, Jie Zhang* and Xinhua Wan*. “pH-responsive inorganic–organic hybrid supramolecular hydrogels with jellyfish-like switchable chromic luminescence” Chem. Commun., 2014, 50, 93339335.

17. Haibing Wei, Shuming Du, Yang Liu, Hongxiang Zhao, Chongyi Chen, Zhibo Li, Jun Lin, Yang Zhang, Jie Zhang*, Xinhua Wan*. “Tunable, luminescent, and self-healing hybrid hydrogels of polyoxometalates and triblock copolymers based on electrostatic assembly” Chem. Commun., 2014, 50, 14471450.

18. Haibing Wei, Guofei Chen, Lujie Cao, Qiuju Zhang, Qing Yan, Xingzhong Fang*. “Enhanced hydrolytic stability of sulfonated polyimide ionomers using bis(naphthalic anhydrides) with low electron affinity” J. Mater. Chem. A, 2013, 1, 10412-10421.

19. Jie Zhang, Xiaofang Chen, Haibing Wei, Xinhua Wan*. “Tunable assembly of amphiphilic rod-coil block copolymers in solution” Chem. Soc. Rev., 2013, 42, 91279154.

20. Haibing Wei, Xingzhong Fang*. “Novel aromatic polyimide ionomers for proton exchange membranes: Enhancing the hydrolytic stability” Polymer, 2011, 52, 27352739.


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