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Fang Dai
Fang Dai
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Cited by
Cited by
Year
Nitrogen-doped activated carbon for a high energy hybrid supercapacitor
B Li, F Dai, Q Xiao, L Yang, J Shen, C Zhang, M Cai
Energy & Environmental Science 9 (1), 102-106, 2016
10102016
Micro‐sized Si‐C composite with interconnected nanoscale building blocks as high‐performance anodes for practical application in lithium‐ion batteries
R Yi, F Dai, ML Gordin, S Chen, D Wang
Advanced Energy Materials 3 (3), 295-300, 2013
4912013
Bottom-up synthesis of high surface area mesoporous crystalline silicon and evaluation of its hydrogen evolution performance
F Dai, J Zai, R Yi, ML Gordin, H Sohn, S Chen, D Wang
Nature communications 5 (1), 3605, 2014
2762014
Activated Carbon from Biomass Transfer for High-Energy Density Lithium-Ion Supercapacitors.
B Li, F Dai, Q Xiao, L Yang, J Shen, C Zhang, M Cai
Advanced Energy Materials 6 (18), 2016
2642016
Inward lithium-ion breathing of hierarchically porous silicon anodes
Q Xiao, M Gu, H Yang, B Li, C Zhang, Y Liu, F Liu, F Dai, L Yang, Z Liu, ...
Nature communications 6 (1), 8844, 2015
2552015
Opportunities and challenges of high-energy lithium metal batteries for electric vehicle applications
S Chen, F Dai, M Cai
ACS energy letters 5 (10), 3140-3151, 2020
2212020
A free‐standing and ultralong‐life lithium‐selenium battery cathode enabled by 3D mesoporous carbon/graphene hierarchical architecture
K Han, Z Liu, J Shen, Y Lin, F Dai, H Ye
Advanced functional materials 25 (3), 455-463, 2015
2032015
Influence of silicon nanoscale building blocks size and carbon coating on the performance of micro‐sized Si–C composite Li‐ion anodes
R Yi, F Dai, ML Gordin, H Sohn, D Wang
Advanced Energy Materials 3 (11), 1507-1515, 2013
1962013
Functional organosulfide electrolyte promotes an alternate reaction pathway to achieve high performance in lithium–sulfur batteries
S Chen, F Dai, ML Gordin, Z Yu, Y Gao, J Song, D Wang
Angewandte Chemie International Edition 55 (13), 4231-4235, 2016
1862016
Dual conductive network-enabled graphene/Si–C composite anode with high areal capacity for lithium-ion batteries
R Yi, J Zai, F Dai, ML Gordin, D Wang
Nano energy 6, 211-218, 2014
1812014
Bis (2, 2, 2-trifluoroethyl) ether as an electrolyte co-solvent for mitigating self-discharge in lithium–sulfur batteries
ML Gordin, F Dai, S Chen, T Xu, J Song, D Tang, N Azimi, Z Zhang, ...
ACS applied materials & interfaces 6 (11), 8006-8010, 2014
1722014
Flexible self-standing graphene–Se@ CNT composite film as a binder-free cathode for rechargeable Li–Se batteries
K Han, Z Liu, H Ye, F Dai
Journal of Power Sources 263, 85-89, 2014
1282014
Exceptional electrochemical performance of rechargeable Li–S batteries with a polysulfide-containing electrolyte
S Chen, F Dai, ML Gordin, D Wang
Rsc Advances 3 (11), 3540-3543, 2013
1002013
Robust metallic lithium anode protection by the molecular‐layer‐deposition technique
Y Zhao, LV Goncharova, Q Sun, X Li, A Lushington, B Wang, R Li, F Dai, ...
Small Methods 2 (5), 1700417, 2018
962018
Rationally designed n–n heterojunction with highly efficient solar hydrogen evolution
M Xu, T Ye, F Dai, J Yang, J Shen, Q He, W Chen, N Liang, J Zai, X Qian
ChemSusChem 8 (7), 1218-1225, 2015
962015
Titanium nitride coating to enhance the performance of silicon nanoparticles as a lithium-ion battery anode
D Tang, R Yi, ML Gordin, M Melnyk, F Dai, S Chen, J Song, D Wang
Journal of Materials Chemistry A 2 (27), 10375-10378, 2014
912014
Self-templated synthesis of mesoporous carbon from carbon tetrachloride precursor for supercapacitor electrodes
D Tang, S Hu, F Dai, R Yi, ML Gordin, S Chen, J Song, D Wang
ACS applied materials & interfaces 8 (11), 6779-6783, 2016
882016
Improved rate capability of Si–C composite anodes by boron doping for lithium-ion batteries
R Yi, J Zai, F Dai, ML Gordin, D Wang
Electrochemistry communications 36, 29-32, 2013
792013
Minimized volume expansion in hierarchical porous silicon upon lithiation
F Dai, R Yi, H Yang, Y Zhao, L Luo, ML Gordin, H Sohn, S Chen, C Wang, ...
ACS applied materials & interfaces 11 (14), 13257-13263, 2019
732019
Electrolyte solution and sulfur-based or selenium-based batteries including the electrolyte solution
DAI Fang, M Cai, Q Xiao, L Yang
US Patent 10,084,204, 2018
542018
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