Run-pan Nie, Assistant Researcher - Professors/Staff - Processing and Equipmen for Advanced Plastics Group
 
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Run-pan Nie, Assistant Researcher

Runpan Nie, Assistant Researcher, graduated from College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics in June 2017, majoring in Materials Science and Engineering, with a B.E. degree.He graduated from School of Polymer Science and Engineering, Sichuan University in June 2023, majoring in Materials Processing Engineering, with a Ph.D. degree.He entered the Carbon-Neutral and Future Technology Institute of Sichuan University in September 2023 to do his postdoctoral research.

His mainly engaged in the research of energy storage and conversion materials, structure and property relationship of electrical polymer materials for high voltage cables. He has published 6 papers as the first/corresponding author in Chemical Engineering Journal, Composite part B: Engineering, Journal of Materials Chemistry C and other journals, with more than 100 SCI citations. He has participated in several top-level projects of the National Natural Science Foundation of China and university-enterprise co-operation projects.


2020/09 - 2023/06 Sichuan University, College of Polymer Science and Engineering, Department of Materials Processing Engineering, PhD


2017/09 - 2020/06 College of Polymer Science and Engineering, Sichuan University, Department of Materials Processing Engineering, Master.


2013/09 - 2017/06 Nanjing University of Aeronautics and Astronautics, School of Materials Science and Technology, Department of Materials Science and Engineering, Bachelor.


2023/09 - Present    Carbon Neutral Future Technology Institute, Sichuan University, Assistant Researcher

1.Composite dielectric structure regulation


2.Dielectric elastomer structure design and functional application


3.High-voltage cable insulation materials and semi-conductive shielding materials


Address: No.24, South Section, First Ring Road, Wuhou District, Chengdu, 610065, P.R. China


Email: nierunpan2023@scu.edu.cn 


Homepage: http://www.ppescu.com/show-3-24-1.html


1.     Run-Pan Nie, Hao Lin*, Yue Li, Hua-Dong Huang, Ding-Xiang Yan, Kun Dai, Jun Lei*, Zhong-Ming Li. Dynamic chemical bonds design strategy for fabricating fast room-temperature healable dielectric elastomer with significantly improved actuation performance. Chemical Engineering Journal 2022, 439, 135683.

2.     Run-Pan Nie, Wen-Bin Tang, Yue Li, Li-Chuan Jia, Ling Xu, Hua-Dong Huang*, Jun Lei*, Zhong-Ming Li. Surfactant-assisted fabrication of room-temperature self-healable dielectric elastomer toward actuation application. Composites Part B: Engineering 2022, 234, 109655.

3.     Li-Chuan Jia, Yun-Fei Yue, Jian-Feng Zeng, Zhi-Xing Wang, Run-Pan Nie*, Ling Xu, Ding-Xiang Yan and Zhong-Ming Li. A review on thermal and electrical behaviours of liquid metal-based polymer composites. Journal of Materials Chemistry C, 2023, DOI: 10.1039/d3tc02560h.

4.     Run-Pan Nie, Jun Lei*, Li-Chuan Jia, Chao Chen, Ling Xu*, Yue Li, Hua-Dong Huang, Feng-Mei Yu, Zhong-Ming Li. Significantly improved high-temperature performance of polymer dielectric via building nanosheets and confined space. Composites Part B: Engineering 2020, 196, 108108.

5.     Run-Pan Nie, Wen-Bin Tang, Chao Chen, Hua-Dong Huang, Yue Li, Kun Dai, Jun Lei*, Zhong-Ming Li*. Superior actuation performance and healability achieved in a transparent, highly stretchable dielectric elastomer film. Journal of Materials Chemistry C 2021, 9(36), 12239-12247.

6.     Run-Pan Nie, Yue Li, Li-Chuan Jia, Jun Lei*, Hua-Dong Huang*, Zhong-Ming Li. PVDF/PMMA Dielectric Films with Notably Decreased Dielectric Loss and Enhanced High-Temperature Tolerance. Journal of Polymer Science Part B: Polymer Physics 2019, 57(16), 1043-1052.


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