Jia Ding
Jia Ding
Professor of Tianjin University
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Carbon nanosheet frameworks derived from peat moss as high performance sodium ion battery anodes
J Ding, H Wang, Z Li, A Kohandehghan, K Cui, Z Xu, B Zahiri, X Tan, ...
ACS nano 7 (12), 11004-11015, 2013
High-density sodium and lithium ion battery anodes from banana peels
EM Lotfabad, J Ding, K Cui, A Kohandehghan, WP Kalisvaart, M Hazelton, ...
ACS nano 8 (7), 7115-7129, 2014
Peanut shell hybrid sodium ion capacitor with extreme energy–power rivals lithium ion capacitors
J Ding, H Wang, Z Li, K Cui, D Karpuzov, X Tan, A Kohandehghan, ...
Energy & Environmental Science 8 (3), 941-955, 2015
Review of hybrid ion capacitors: from aqueous to lithium to sodium
J Ding, W Hu, E Paek, D Mitlin
Chemical reviews 118 (14), 6457-6498, 2018
Tin and tin compounds for sodium ion battery anodes: phase transformations and performance
Z Li, J Ding, D Mitlin
Accounts of chemical research 48 (6), 1657-1665, 2015
Colossal pseudocapacitance in a high functionality–high surface area carbon anode doubles the energy of an asymmetric supercapacitor
Z Li, Z Xu, H Wang, J Ding, B Zahiri, CMB Holt, X Tan, D Mitlin
Energy & Environmental Science 7 (5), 1708-1718, 2014
Hybrid device employing three-dimensional arrays of MnO in carbon nanosheets bridges battery–supercapacitor divide
H Wang, Z Xu, Z Li, K Cui, J Ding, A Kohandehghan, X Tan, B Zahiri, ...
Nano letters 14 (4), 1987-1994, 2014
Decoupling electrolytes towards stable and high-energy rechargeable aqueous zinc–manganese dioxide batteries
C Zhong, B Liu, J Ding, X Liu, Y Zhong, Y Li, C Sun, X Han, Y Deng, ...
Nature Energy 5 (6), 440-449, 2020
Sulfur‐grafted hollow carbon spheres for potassium‐ion battery anodes
J Ding, H Zhang, H Zhou, J Feng, X Zheng, C Zhong, E Paek, W Hu, ...
Advanced Materials 31 (30), 1900429, 2019
Challenges in zinc electrodes for alkaline zinc–air batteries: obstacles to commercialization
Z Zhao, X Fan, J Ding, W Hu, C Zhong, J Lu
ACS Energy Letters 4 (9), 2259-2270, 2019
Exceptional energy and new insight with a sodium–selenium battery based on a carbon nanosheet cathode and a pseudographite anode
J Ding, H Zhou, H Zhang, T Stephenson, Z Li, D Karpuzov, D Mitlin
Energy & Environmental Science 10 (1), 153-165, 2017
Excellent energy–power characteristics from a hybrid sodium ion capacitor based on identical carbon nanosheets in both electrodes
H Wang, D Mitlin, J Ding, Z Li, K Cui
Journal of Materials Chemistry A 4 (14), 5149-5158, 2016
Heteroatom enhanced sodium ion capacity and rate capability in a hydrogel derived carbon give record performance in a hybrid ion capacitor
J Ding, Z Li, K Cui, S Boyer, D Karpuzov, D Mitlin
Nano Energy 23, 129-137, 2016
A rechargeable Zn–air battery with high energy efficiency and long life enabled by a highly water‐retentive gel electrolyte with reaction modifier
Z Song, J Ding, B Liu, X Liu, X Han, Y Deng, W Hu, C Zhong
Advanced Materials 32 (22), 1908127, 2020
Utilizing solar energy to improve the oxygen evolution reaction kinetics in zinc–air battery
X Liu, Y Yuan, J Liu, B Liu, X Chen, J Ding, X Han, Y Deng, C Zhong, ...
Nature communications 10 (1), 4767, 2019
Battery technologies for grid-level large-scale electrical energy storage
X Fan, B Liu, J Liu, J Ding, X Han, Y Deng, X Lv, Y Xie, B Chen, W Hu, ...
Transactions of Tianjin University 26, 92-103, 2020
High rate SnO2–graphene dual aerogel anodes and their kinetics of lithiation and sodiation
Z Li, J Ding, H Wang, K Cui, T Stephenson, D Karpuzov, D Mitlin
Nano Energy 15, 369-378, 2015
Selenium impregnated monolithic carbons as free‐standing cathodes for high volumetric energy lithium and sodium metal batteries
J Ding, H Zhou, H Zhang, L Tong, D Mitlin
Advanced Energy Materials 8 (8), 1701918, 2018
Recent advances and challenges in divalent and multivalent metal electrodes for metal–air batteries
Y Sun, X Liu, Y Jiang, J Li, J Ding, W Hu, C Zhong
Journal of Materials Chemistry A 7 (31), 18183-18208, 2019
Activation with Li enables facile sodium storage in germanium
A Kohandehghan, K Cui, M Kupsta, J Ding, E Memarzadeh Lotfabad, ...
Nano letters 14 (10), 5873-5882, 2014
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