Xifei Li
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Recent developments and understanding of novel mixed transition‐metal oxides as anodes in lithium ion batteries
Y Zhao, X Li, B Yan, D Xiong, D Li, S Lawes, X Sun
Advanced Energy Materials 6 (8), 1502175, 2016
Recent Advances in Layered Ti3C2Tx MXene for Electrochemical Energy Storage
D Xiong, X Li, Z Bai, S Lu
Small 14 (17), 1703419, 2018
Significantly improving cycling performance of cathodes in lithium ion batteries: the effect of Al2O3 and LiAlO2 coatings on LiNi0. 6Co0. 2Mn0. 2O2
W Liu, X Li, D Xiong, Y Hao, J Li, H Kou, B Yan, D Li, S Lu, A Koo, K Adair, ...
Nano Energy 44, 111-120, 2018
Ultrathin MoS2/Nitrogen‐Doped Graphene Nanosheets with Highly Reversible Lithium Storage
K Chang, D Geng, X Li, J Yang, Y Tang, M Cai, R Li, X Sun
Advanced Energy Materials 3 (7), 839-844, 2013
Tin oxide with controlled morphology and crystallinity by atomic layer deposition onto graphene nanosheets for enhanced lithium storage
X Li, X Meng, J Liu, D Geng, Y Zhang, MN Banis, Y Li, J Yang, R Li, X Sun, ...
Advanced Functional Materials 22 (8), 1647-1654, 2012
Interlayer material selection for lithium-sulfur batteries
L Fan, M Li, X Li, W Xiao, Z Chen, J Lu
Joule 3 (2), 361-386, 2019
Controllable Cathode–Electrolyte Interface of Li[Ni0.8Co0.1Mn0.1]O2 for Lithium Ion Batteries: A Review
H Maleki Kheimeh Sari, X Li
Advanced Energy Materials 9 (39), 1901597, 2019
Atomic layer deposition of solid-state electrolyte coated cathode materials with superior high-voltage cycling behavior for lithium ion battery application
X Li, J Liu, MN Banis, A Lushington, R Li, M Cai, X Sun
Energy & Environmental Science 7 (2), 768-778, 2014
Significant impact of 2D graphene nanosheets on large volume change tin-based anodes in lithium-ion batteries: A review
Y Zhao, X Li, B Yan, D Li, S Lawes, X Sun
Journal of Power Sources 274, 869-884, 2015
Superior cycle stability of nitrogen-doped graphene nanosheets as anodes for lithium ion batteries
X Li, D Geng, Y Zhang, X Meng, R Li, X Sun
Electrochemistry Communications 13 (8), 822-825, 2011
Superior energy capacity of graphene nanosheets for a nonaqueous lithium-oxygen battery
Y Li, J Wang, X Li, D Geng, R Li, X Sun
Chemical Communications 47 (33), 9438-9440, 2011
Layer by layer assembly of sandwiched graphene/SnO 2 nanorod/carbon nanostructures with ultrahigh lithium ion storage properties
D Wang, J Yang, X Li, D Geng, R Li, M Cai, TK Sham, X Sun
Energy & Environmental Science 6 (10), 2900-2906, 2013
Recent advancements of polyaniline-based nanocomposites for supercapacitors
P Liu, J Yan, Z Guang, Y Huang, X Li, W Huang
Journal of Power Sources 424, 108-130, 2019
Nitrogen-doped carbon nanotubes as cathode for lithium–air batteries
Y Li, J Wang, X Li, J Liu, D Geng, J Yang, R Li, X Sun
Electrochemistry Communications 13 (7), 668-672, 2011
Review and prospect of NiCo2O4-based composite materials for supercapacitor electrodes
Y Li, X Han, T Yi, Y He, X Li
Journal of energy chemistry 31, 54-78, 2019
Nitrogen-doped graphene nanosheets as cathode materials with excellent electrocatalytic activity for high capacity lithium-oxygen batteries
Y Li, J Wang, X Li, D Geng, MN Banis, R Li, X Sun
Electrochemistry Communications 18, 12-15, 2012
Capacitive mechanism of oxygen functional groups on carbon surface in supercapacitors
Y He, Y Zhang, X Li, Z Lv, X Wang, Z Liu, X Huang
Electrochimica Acta 282, 618-625, 2018
Three-dimensional ordered macroporous metal–organic framework single crystal-derived nitrogen-doped hierarchical porous carbon for high-performance potassium-ion batteries
X Zhou, L Chen, W Zhang, J Wang, Z Liu, S Zeng, R Xu, Y Wu, S Ye, ...
Nano letters 19 (8), 4965-4973, 2019
Significant impact on cathode performance of lithium-ion batteries by precisely controlled metal oxide nanocoatings via atomic layer deposition
X Li, J Liu, X Meng, Y Tang, MN Banis, J Yang, Y Hu, R Li, M Cai, X Sun
Journal of Power Sources 247, 57-69, 2014
Three‐dimensional porous core‐shell Sn@ carbon composite anodes for high‐performance lithium‐ion battery applications
X Li, A Dhanabalan, L Gu, C Wang
Advanced Energy Materials 2 (2), 238-244, 2012
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