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Zhaoling Li

Personal Resume



Zhaoling Li is currently a Full Professor in College of Textiles at Donghua University. He received the Ph.D. degree in Textile Engineering from Donghua University in 2016. He was once serving as a Visiting Scholar in Georgia Institute of Technology for one year and a half. He has been promoted as a Full Professor in 2020. His research focuses on triboelectric nanogenerator, pressure sensor, and electronic skin for energy, sensing, environment, and electronic applications in the form of functional fibers and smart textiles.




Education and Employment History

2004-2008

Department of Chemistry, Taishan University

B.S.

2008-2011

School of Chemical Engineering, Shandong University of Technology

M.S.

2012-2016

College of Textiles, Donghua University

Ph.D.

2013-2015

School of Materials Science and Engineering, Georgia Institute of Technology

Joint Ph.D. 

2016-2020

College of Textiles, Donghua University

Associate Professor

2020-present
College of Textiles, Donghua UniversityFull Professor



Major Research Achievements


     

Prof. Li has contributed 2 book chapters, published more than 70 peer-reviewed papers (Angew. Chem. Inter. Ed., Adv. Mater., Adv. Funct. Mater., etc.), and authorized 21 invention patents. His Google Scholar citation is more than 6200 times with a current h-index of 38. In recognition for his research accomplishment, he has been granted many academic awards. Prof. Li is the recipient of National Youth Talent Support Program, Shanghai Rising-Star Program, Shanghai Talent Development Funding, and many others. He has undertaken more than 20 research projects ranging from National Natural Science Foundation of China (NSFC), Natural Science Foundation of Shanghai, Shanghai Committee of Science and Technology, Shanghai Municipal Human Resources and Social Security Bureau, DHU Distinguished Young Professor Program to industrial community.

Representative Works:

[1] Zhaoling Li, Jun Chen, Jin Yang, Yuanjie Su, Xing Fan, Ying Wu, Chongwen Yu and Zhong Lin Wang*, β-cyclodextrin enhanced triboelectrification for self-powered phenol detection and electrochemical degradation, Energy & Environmental Science, 2015, 8, 887-896.

[2] Zhaoling Li, Jun Chen, Hengyu Guo,  Xing Fan,  Zhen Wen,  Min-Hsin Yeh,  Chongwen Yu,  Xia Cao* and Zhong Lin Wang*, Triboelectrification enabled self-powered detection and removal of heavy metal ions in wastewater, Advanced Materials, 2016, 28, 2983-2991.

[3] Zhaoling Li, Jun Chen, Jiajia Zhou, Li Zheng, Ken C. Pradel, Xing Fan, Hengyu Guo, Zhen Wen, Min-Hsin Yeh, Chongwen Yu* and Zhong Lin Wang*, High-efficiency ramie fiber degumming and self-powered degumming wastewater treatment using triboelectric nanogenerator, Nano Energy, 2016, 22, 548-557.

[4] Zhaoling Li, Jiali Shen, Ibrahim Abdalla, Jianyong Yu and Bin Ding*, Nanofibrous membrane constructed wearable triboelectric nanogenerator for high performance biomechanical energy harvesting, Nano Energy, 2017, 36, 341-348.

[5] Zhaoling Li, Miaomiao Zhu, Qian Qiu, Jianyong Yu and Bin Ding*, Multilayered fiber-based triboelectric nanogenerator with high performance for biomechanical energy harvesting, Nano Energy, 2018, 53, 726-733.

[6] Zhaoling Li, Miaomiao Zhu, Jiali Shen, Qian Qiu, Jianyong Yu and Bin Ding*, All-fiber structured electronic skin with high elasticity and breathability, Advanced Functional Materials, 2019, 1908411.

[7] Zhengguang Yan, Liangliang Wang, Yifan Xia, Rendong Qiu, Wenquan Liu, Min Wu, Yan Zhu, Shunli Zhu, Chunyang Jia, Miaomiao Zhu, Ruirui Cao, Zhaoling Li* and Xin Wang*, Flexible high-resolution triboelectric sensor array based on patterned laser-induced graphene for self-powered real-time tactile sensing, Advanced Functional Materials, 2021, 2100709.

[8] Miaomiao Zhu, Mengna Lou, Jianyong Yu, Zhaoling Li* and Bin Ding*, Energy autonomous hybrid electronic skin with multi-modal sensing capabilities, Nano Energy, 2020, 78, 105208.

[9] Qian Qiu, Miaomiao Zhu, Zhaoling Li*, Kaili Qiu, Xiaoyan Liu, Jianyong Yu and Bin Ding*, Highly flexible, breathable, tailorable and washable power generation fabrics for wearable electronics, Nano Energy, 2019, 58, 750-758. 

[10] Miaomiao Zhu, Jialu Li, Jianyong Yu, Zhaoling Li* and Bin Ding*, Superstable and intrinsically self-healing fibrous membrane with bionic confined protective structure for breathable electronic skin, Angewandte Chemie International Edition, 2022, 61, e202200226

[11] Miaomiao Zhu, Jianyong Yu, Zhaoling Li* and Bin Ding*, Self-healing fibrous membranes, Angewandte Chemie International Edition, 2022, 61, e202208949.

[12] Ibrahim Abdalla, Ahmed Elhassan, Jianyong Yu, Zhaoling Li* and Bin Ding*, A hybrid comprised of porous carbon nanofibers and rGO for efficient electromagnetic wave absorption, Carbon, 2020, 157, 703-713.

[13] Ahmed Elhassan, Ibrahim Abdalla, Jianyong Yu, Zhaoling Li* and Bin Ding*, Microwave-assisted fabrication of sea cucumber-like hollow structured composite for high-performance electromagnetic wave absorption, Chemical Engineering Journal, 2019, 392, 123646. 

[14] Yabing Wang, Miaomiao Zhu, Xuedian Wei, Jianyong Yu, Zhaoling Li* and Bin Ding*, A dual-mode electronic skin textile for pressure and temperature sensing, Chemical Engineering Journal, 2021, 425, 130599.

[15] Miaomiao Zhu, Mengna Lou, Ibrahim Abdalla, Jianyong Yu, Zhaoling Li* and Bin Ding*, Highly shape adaptive fiber based electronic skin for sensitive joint motion monitoring and tactile sensing, Nano Energy, 2020, 69, 104429.

[16] Miaomiao Zhu, Yabing Wang, Mengna Lou, Jianyong Yu, Zhaoling Li* and Bin Ding*, Bioinspired transparent and antibacterial electronic skin for sensitive tactile sensing, Nano Energy, 2021, 81, 105669.

[17] Xuedian Wei, Miaomiao Zhu, Jialu Li, Liu Liu, Jianyong Yu, Zhaoling Li* and Bin Ding*, Wearable biosensor for sensitive detection of uric acid in artificial sweat enabled by a fiber structured sensing interface, Nano Energy. 2021, 85, 106031.

[18]Shengying Cai, Changshun Xu, Danfeng Jiang, Meiling Yuan, Qingwen Zhang*, Zhaoling Li* and Yi Wang*, Air-permeable electrode for highly sensitive and noninvasive glucose monitoring enabled by graphene fiber fabrics, Nano Energy, 2022, 93, 106904.

[19] Xiaoshuang Lv, Yang Liu, Jianyong Yu, Zhaoling Li* and Bin Ding*, Smart fibers for selfpowered electronic skins, Advanced Fiber Materials, 2023, 5, 401-428. 

[20] Tianhe Tian, Xuedian Wei, Ahmed Elhassan, Jianyong Yu, Zhaoling Li* and Bin Ding*, Highly flexible, efficient, and wearable infrared radiation heating carbon fabric, Chemical Engineering Journal, 2021, 128114. 

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