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Gongrui Wang

Postdoctoral fellow 

Tel (office): 16655168631 

Email: wanggongrui@dicp.ac.cn

Research Interests

Fast Charging Batteries, High Energy Density Supercapacitors, Carbon materials

Educational Background

2022.7 – 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. G. R. Wang, Y. P. Li, S. H. Jiao, J. Li; B. Peng, L. Shi*, G. Q. Zhang*, Realizing the synergy of Sn cluster incorporation and nitrogen doping for a carbonaceous hierarchical nanosheet-assembly enables superior universal alkali metal ion storage performance with multiple active sites. Journal of Material Chemistry A 2020, 8, 24774-24781.

  2. G. R. Wang, Y. P. Li, Y. Liu, S. H. Jiao, B. Peng, J. Li, L. Yu, G. Q. Zhang*. Nest-like TiO2-nitrogen-doped-carbon hybrid nanostructures as superior host for potassium-ion hybrid capacitors. Chemical Engineering Journal 2021, 127977.

  3. G. R. Wang, J. Li, L. Yu, J. Y. Gao, G. Q. Zhang*, Hierarchical carbon nanosheet assembly with SiOx incorporation and nitrogen doping achieves enhanced lithium ion storage performance, Advanced Energy Sustainability Research, 2021, 2100026.

  4. G. R. Wang+, J. H. Zhang+, X. Y. He, J. Li, L. Yu, B. Peng and G. Q. Zhang*, Concunrent manipulation of anion and cation adsorption kinetics in pancake-like carbon achieves ultrastable potassium ion hybrid capacitors, Energy Storage Material 2022, 46, 10–19.

  5. G. R. Wang+, J. H. Zhang+, X. Y. He, J. Li, L. Yu, B. Peng, R. Liu, S. Y. Zeng and G. Q. Zhang*, Tailoring nitrogen species in disk-like carbon anode towards superior potassium ion storage, Small, 2022, 2203288.

  6. J. G. Gao+, G. R. Wang +, W. T. Wang+, Lai Yu, Bo Peng, Ahmed El-Harairy, Jie Li, and Genqiang Zhang*, Engineering electronic transfer dynamics and ion adsorption capability in dual-doped carbon for high-energy potassium ion hybrid capacitors. ACS Nano 2022, 16, 6255–6265

  7. J. Y. Gao+, G. R. Wang+, Y. Liu, J. Li, B. Peng, S. H. Jiao, S. Y. Zeng* and G. Q. Zhang*, Ternary molybdenum sulfoselenide based hybrid nanotubes boost potassium-ion diffusion kinetics for high energy/power hybrid capacitors. Journal of Material Chemistry A, 2020, 8, 13946-13954.

  8. L. Yu+, G. R. Wang+, J. Y. Gao, J. Li, B. Peng, G. Q. Zhang*, Sacrificing nanowire catalyzed polymerization process generates hierarchical MoSe2 grafted carbonaceous nanotubes for superior potassium ion storage, ACS Applied Energy Materials, 2021, 4, 6757–6767.

  9. Q. Z. Qian+, W. T. Wang+, G. R. Wang+, X. Y. He, Y. X. Chen, Y. F. Feng, Z. Y. Li, Y. Zhu, Y. Y. Zhang, and G. Q. Zhang*, Phase-selective synthesis of ruthenium phosphide in hybrid structure enables efficient hybrid water electrolysis under pH-universal conditions, Small, 2022, 18, 2200242.

  10. G. R. Wang, Y. S. Meng, L. Wang, J. Xia, F. L. Zhu*, and Y. Zhang*, Yolk-shell Co3O4-CoO/Carbon composites for lithium-ion batteries with enhanced electrochemical properties, International Journal of Electrochemical Science, 2017, 12, 2618-2627.

  11. G. R. Wang, F. L. Zhu*, J. Xia, L. Wang, Y. S. Meng, and Y. Zhang*, Preparation of Co3O4/Carbon derived from ionic liquid and its application in lithium-ion batteries, Electrochimica Acta, 2017, 257, 138-145.





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