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周寅宁


姓名:周寅宁

职称:特别研究员,博士生导师

邮箱 :zhouyn@sjtu.edu.cn

主页: http://pelab.sjtu.edu.cn/

通讯地址:上海市东川路800号化学化工学院A407B

教育经历

2005.09-2009.07  天津科技大学,学士

2009.09-2012.07  厦门大学,硕士 (导师:罗正鸿 教授)

2012.09-2015.12  上海交通大学,博士 (导师:罗正鸿 教授)

工作经历

2018.10-至今 上海交通大学化学化工学院,特别研究员

2015.12-2018.10 上海交通大学,博士后(合作导师:罗正鸿/赵亚平 教授)

2016.07-2018.7 加拿大McMaster University, 博士后 (合作导师:Prof. Shiping Zhu)

研究兴趣

先进聚合技术与工程、聚合反应动力学、聚合物产品精确定制、模型基功能聚合物设计制备

荣誉奖励

1). 2017, 2016 博士后年度考核优秀奖

2). 2015, 2014 博士研究生国家奖学金

3). 2015 美国化学学会会员奖

4). 2014 中国石化联合会科技进步二等奖(第4获奖人)

5). 2013 博士研究生优秀奖学金

6). 2012 博士研究生优秀新生奖学金

科研项目(主持)

1). 2016国家自然科学青年基金1

2). 2017中国博士后科学基金面上项目特别资助

3). 2016中国博士后科学基金面上项目一等资助

代表性论文 (For a complete list, please visit Pelab page)

1. Yin-Ning Zhou, Jin-Jin Li, Darko Ljubic, Zheng-Hong Luo,* Shiping Zhu* Mechanically Mediated Atom Transfer Radical Polymerization: Exploring its Potential at High Conversion. Macromolecules 2018, 51, 6911–6921.

2. Jin-Jin Li, Yin-Ning Zhou,* Zheng-Hong Luo* Polymeric Materials with Switchable Superwettability for Controllable Oil/water Separation: A Comprehensive Review. Progress in Polymer Science 2018, 87, 1-33.

3. Yin-Ning Zhou, Lei Lei, Zheng-Hong Luo*, Shiping Zhu*, CO2/N2-Switchable Thermoresponsive Ionic Liquid Copolymer. Macromolecules 2017, 50, 8378-8389.

4. Yin-Ning Zhou, Zheng-Hong Luo*. Assessment of Kinetics of Photoinduced Fe-based Atom Transfer Radical Polymerization under Conditions Using Modeling Approach. AIChE Journal 2017, 63, 4987-4997.

5. Yin-Ning Zhou, Jun-Kang Guo, Jin-Jin Li, Zheng-Hong Luo*. Photoinduced Iron(III)-Mediated Atom Transfer Radical Polymerization with In Situ Generated Initiator: Mechanism and Kinetics Studies. Industrial & Engineering Chemistry Research 2016, 55, 10235-10242.

6. Yin-Ning Zhou, Jin-Jin Li, Zheng-Hong Luo*. Toward Efficient Water/Oil Separation Material: Effect of Copolymer Composition on pH-Responsive Wettability and Separation Performance. AIChE Journal 2016, 62, 1758-1771.

7. Yin-Ning Zhou, Zheng-Hong Luo*. State-of-the-art and Progress in Method of Moments for the Model-based Reversible-Deactivation Radical Polymerization. Macromolecular Reaction Engineering 2016, 10, 516-534. (Highlighted by Materials views and Materials views China)

8. Yin-Ning Zhou, Jin-Jin Li, Zheng-Hong Luo*. PhotoATRP-based Fluorinated Thermo-Sensitive Block Copolymer for Controllable Water/Oil Separation. Industrial & Engineering Chemistry Research 2015, 54, 10714−10722.

9. Yin-Ning Zhou, Zheng-Hong Luo*. An Old Kinetic Method for a New Polymerization Mechanism: Toward Photochemically Mediated ATRP. AIChE Journal 2015, 61, 1947-1958.

10. Yin-Ning Zhou, Zheng-Hong Luo*. Copper(0)-Mediated Reversible-Deactivation Radical Polymerization: Kinetics Insight and Experimental Study. Macromolecules 2014, 47, 6218-6229.

11. Yin-Ning Zhou, Jin-Jin Li, Qing Zhang, Zheng-Hong Luo*. A Novel Fluorinated Polymeric Product for Photo-Reversibly Switchable Hydrophobic Surface. AIChE Journal 2014, 60, 4211-4221. (Top tier paper)

15. Yin-Ning Zhou, Zheng-Hong Luo*. Insight into the ATRP Rate Controlling Ability of Initiator Structure: Micro-molecular, Macro-molecular and Immobilized Initiators. Journal of Polymer Science Part A: Polymer Chemistry 2014, 52, 2228-2238. (Cover story)

16. Yin-Ning Zhou, Zheng-Hong Luo*. Facile Synthesis of Gradient Copolymers via Semi-batch Copper(0)-Mediated Living Radical Copolymerization at Ambient Temperature. Polymer Chemistry 2013, 4, 76-84. (Cover story)

17. Yin-Ning Zhou, Hua Cheng, Zheng-Hong Luo*. A Novel Method for Preparing Silver/Poly(siloxane-b-methyl methacrylate) Nanocomposites with Multiple Properties in the DMF-Toluene Mixture Solvent. AIChE Journal 2013, 59, 4780-4793.

18. Yin-Ning Zhou, Zheng-Hong Luo*, Jian-Hua Chen. Theoretical Modeling Coupled with Experimental Study on the Preparation and Characterization Comparison of Fluorinated Copolymers: Effect of Chain Structure on Copolymer Properties. AIChE Journal 2013, 59, 3019-3033.


热诚欢迎具有化工、高分子背景,对研究工作感兴趣的硕士生(1人/年)、博士生(1人/年)和博士后加入本课题组,同时欢迎本科生及访问学生到本课题组参与研究课题。课题组与加拿大麦克马斯特大学、香港中文大学深圳分校、比利时根特大学等多个课题组保持良好的关系,组内优秀的研究生有机会赴国外参加会议,及开展合作研究。


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