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Ling Zhang
Associate professor
Polymer chemistry and physics
Healable polymeric materials, Water-based adhesives
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Contact Information
Email    zhanglingchem@jlu.edu.cn
Office     State Key Laboratory of Supramolecular Structure and Materials, Room B300, Jilin University.               
Lab        Tang aoqing Building, Room A602.
Short Biography
Dr. Ling Zhang received her Ph.D. in Polymer chemistry and physics from Jilin University in 2011 under the supervision of Prof. Junqi Sun. Then, she started to conduct her postdoctoral research in Georgia Institute of technology, USA. In September 2015, she joined the faculty of Jilin University as an associated professor.
Research Interest
Based on the supramolecular interactions between polymers, Dr. Zhang’s group has carried out three aspects of research work:
(1) Design and fabrication of healable polymers, especially the room-temperature self-healing polymers with excellent mechanical properties.
(2) Using polymer wastes or low-cost polymers as raw materials to design and prepare super-strong water-based adhesives for various substrates.
(3) Design and develop healable ionogel strain sensors with tear resistance capability.
Honors & Awards

1. Shi, Z.; Kang, J.; Zhang, L.* Water-enabled room-temperature self-healing and recyclable polyurea materials with super-strong strength, toughness, and large stretchability. ACS Appl. Mater. Interfaces, 2020, 12, 23484−23493.
2. Guo, H.; Fang, X.; Zhang, L.;* Sun, J. Q. Facile fabrication of room-temperature self-healing, mechanically robust, highly stretchable, and tough polymers using dual dynamic cross-linked polymer complexes. ACS Appl. Mater. Interfaces, 2019, 11, 33356−33363.
3. Xiong, H.; Zhang, Y.; Liu, Y.; Zhang, L.* et al. Self-template construction of honeycomb-like mesoporous YPO4:Ln3+ (Ln = Eu, Tb) phosphors with tunable luminescent properties. J. Alloys Compd., 2019, 782, 845−851.
4. Liu, Z.; Xiong, H.; Luo, Y.; Zhang, L.; Zhang, L.;* Gao, Y.; Qiao, Z.* Interface-induced self-assembly strategy toward 2D ordered mesoporous carbon/MXene heterostructures for high-performance supercapacitors. ChemSusChem, 2021, 14, 4422-4430.
5. Feng, D.; Dong, Y.; Nie, P.; Zhang, L.*; Qiao, Z.* CoNiCuMgZn high entropy alloy nanoparticles embedded onto graphene sheets via anchoring and alloying strategy as efficient electrocatalysts for hydrogen evolution reaction. Chem. Eng. J. 2022, 430,132883−132892.
6. Liu, X.; Mishra, D. D.; Li, Y.; Gao, L.; Peng, H.*; Zhang, L.*; Hu, C.* Biomass-derived carbonaceous materials with multichannel waterways for solar-driven clean water and thermoelectric power generation. ACS Sustainable Chem. Eng. 2021, 9, 4571–4582.

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