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Asst. Prof. Gongrui Wang

Assistant Professor 

Tel (office): 16655168631 

Email: wanggongrui#dicp.ac.cn

Research Interests

Fast Charging Batteries, High Energy Density Supercapacitors, Carbon materials

Educational Background

2025.5 – Associate Professor, DICP, CAS

2022.7 – 2025.5 Postdoctoral fellow, DICP, CAS

2018.9 – 2022.7 Ph.D in Material Physics and Chemistry, University of Science and Technology of China 

2015.9 – 2018.7 M.D. in Materials Engineering, Lanzhou University of Technology 

2011.9 – 2015.7 B.S. in Materials Science and Engineering, Qingdao University of Technology

Representative Publications

  1. Yuguo Ouyang, Ying Zhang, Gongrui Wang,* Xiaofei Wei, Anping Zhang, Junwei Sun, Shiqiang Wei, Li Song, Fangna Dai,* and Zhong-Shuai Wu*, An in situ near-surface reconstruction strategy endowing lithium-rich oxides with li/o dual vacancies and spinel-carbon dual coating layers toward high energy density cathode, Adv. Funct. Mater. 2024, 2401249.

  2. Gongrui Wang, Zhihong Bi, Anping Zhang, Pratteek Das, Hu Lin, Zhong-Shuai Wu*, High-voltage and fast-charging lithium cobalt oxide cathodes: From key challenges and strategies to future perspectives, Engineering 2024, 37, 105–127.

  3. Xuanxuan Ren, Gongrui Wang,* Tongle Chen, Mingzhe Yang, Tong Mu, Li Song, Xiang Feng,* and Zhong-Shuai Wu*, A surface-bulk integrated strategy of Ti doping and LaTiO3 coating achieves highly reversible anionic redox and fast-charging cyclability in cobalt-free lithium-rich layered oxides, Adv. Funct. Mater. 2025, 2422482.

  4. Mingzhe Yang, Tongle Chen, Gongrui Wang,* Xiaofeng Li, Yangyang Liu, Xuanxuan Ren, Ying Zhang, Lu Wu, Li Song, Juncai Sun,* and Zhong-Shuai Wu*,A Surface-to-Interface Boronation Engineering Strategy Stabilizing the O/Mn Redox Chemistry of Lithium-Rich Manganese based Oxides towards High Energy-Density Cathodes, Energy & Environmental Science, 2025, 18, 6168–6179.

  5. Yuning Han, Gongrui Wang,* Xuanxuan Ren, Mingzhe Yang, Zhongtao Li,* Zhong-shuai Wu,* High specific-energy lithium-rich manganese-based layered oxide cathodes: key challenges, modification strategies and future prospects,New Carbon Materials, 2025, 40, 597-620.





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