George Zheng Chen, PhD, DIC
Affiliations: | 2003- | University of Nottingham, Nottingham, England, United Kingdom |
Area:
Electrochemistry, Materials Chemistry, Energy Storage, Supercapattery, Supercapacitor, Molten SaltsWebsite:
https://www.nottingham.ac.uk/engineering/departments/chemenv/people/george.chenGoogle:
"https://scholar.google.com/citations?hl=en&user=ohj23fgAAAAJ"Bio:
Parents
Sign in to add mentorQixin Zhang | grad student | 1982-1985 | Fujian Normal University, China | |
(MSc in Physical Chemistry / Electrochemistry) | ||||
John Wyndham Albery | grad student | 1988-1992 | Imperial College of Science, Technology and Medicine, United Kingdom | |
(PhD in Physical Chemistry / Electrochemistry) | ||||
Paul D. Beer | post-doc | 1992-1994 | University of Oxford, United Kingdom | |
(Supramolecular chemistry and electrochemical molecular recognition) | ||||
Derek John Fray | research scientist | 1996-2003 | Cambridge | |
(Molten salt electrochemistry and supercapacitor) |
Children
Sign in to add traineeXianbo Jin | research assistant | 2000-2010 | Wuhan University / University of Nottingham |
Dihua Wang | research assistant | 2000-2010 | Wuhan University / University of Nottingham |
Kai Jiang | grad student | 2001-2004 | Wuhan University |
Wei Xiao | grad student | 2001-2004 | Wuhan University / University of Nottingham |
Chuang Peng | grad student | 2004-2007 | Nottingham |
Di Hu | grad student | 2005-2009 | Nottingham |
BETA: Related publications
See more...
Publications
You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect. |
Shi Z, Hao P, He Y, et al. (2025) Self-Regulatory Lean-Electrolyte Flow for Building 600 Wh Kg-Level Rechargeable Lithium Batteries. Advanced Materials (Deerfield Beach, Fla.). e2419377 |
Egun IL, Akinwolemiwa B, Yin B, et al. (2024) Conversion of high moisture biomass to hierarchical porous carbon via molten base carbonisation and activation for electrochemical double layer capacitor. Bioresource Technology. 409: 131251 |
Chang X, Weng W, Li M, et al. (2023) LiAlO-Modified Li Negative Electrode with LiGePS Electrolytes for Stable All-Solid-State Lithium Batteries. Acs Applied Materials & Interfaces |
Guo Q, Yu Y, Xia S, et al. (2022) CNT/PVDF Composite Coating Layer on Cu with a Synergy of Uniform Current Distribution and Stress Releasing for Improving Reversible Li Plating/Stripping. Acs Applied Materials & Interfaces |
Al-Shara NK, Sher F, Iqbal SZ, et al. (2021) Design and optimization of electrochemical cell potential for hydrogen gas production Journal of Energy Chemistry. 52: 421-427 |
Chen Y*, Chen GZ*. (2020) New precursors derived activated carbon and graphene for aqueous supercapacitors with unequal electrode capacitances Acta Physico-Chimica Sinica. 36: 1904025 (19 pages) |
Zhang LX, Chi YQ, Sun XL, et al. (2020) Effects of pore widening versus oxygenation on capacitance of activated carbon in aqueous sodium sulfate electrolyte Journal of the Electrochemical Society. 167: 040524 |
Lian Z, Wei CH, Gao B, et al. (2020) Synergetic treatment of dye contaminated wastewater using microparticles functionalized with carbon nanotubes/titanium dioxide nanocomposites Rsc Advances. 10: 9210-9225 |
Dolganov A, Bishop MT, Tomatis M, et al. (2020) Environmental assessment of the near-net-shape electrochemical metallisation process and the Kroll – electron beam melting process for titanium manufacture Green Chemistry. 22: 1952-1967 |
Al-Juboori O, Sher F*, Khalid U, et al. (2020) Electrochemical production of sustainable hydrocarbon fuels from CO2 co-electrolysis in eutectic molten melts Acs Sustainable Chemistry & Engineering |