Xingcheng Xiao
Xingcheng Xiao
Technical Fellow, General Motors R&D Center
Verified email at
Cited by
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Silicon‐based nanomaterials for lithium‐ion batteries: a review
X Su, Q Wu, J Li, X Xiao, A Lott, W Lu, BW Sheldon, J Wu
Advanced Energy Materials 4 (1), 1300882, 2014
A review of graphene and graphene oxide sponge: material synthesis and applications to energy and the environment
V Chabot, D Higgins, A Yu, X Xiao, Z Chen, J Zhang
Energy & Environmental Science 7 (5), 1564-1596, 2014
Silicon‐based anodes for lithium‐ion batteries: from fundamentals to practical applications
K Feng, M Li, W Liu, AG Kashkooli, X Xiao, M Cai, Z Chen
Small 14 (8), 1702737, 2018
Toward an ideal polymer binder design for high-capacity battery anodes
M Wu, X Xiao, N Vukmirovic, S Xun, PK Das, X Song, P Olalde-Velasco, ...
Journal of the American Chemical Society 135 (32), 12048-12056, 2013
Hierarchical porous silicon structures with extraordinary mechanical strength as high-performance lithium-ion battery anodes
H Jia, X Li, J Song, X Zhang, L Luo, Y He, B Li, Y Cai, S Hu, X Xiao, ...
Nature communications 11 (1), 1474, 2020
Polydopamine-coated, nitrogen-doped, hollow carbon–sulfur double-layered core–shell structure for improving lithium–sulfur batteries
W Zhou, X Xiao, M Cai, L Yang
Nano letters 14 (9), 5250-5256, 2014
Synergetic effects of inorganic components in solid electrolyte interphase on high cycle efficiency of lithium ion batteries
Q Zhang, J Pan, P Lu, Z Liu, MW Verbrugge, BW Sheldon, YT Cheng, Y Qi, ...
Nano letters 16 (3), 2011-2016, 2016
Graphene‐based nanocomposites for energy storage
L Ji, P Meduri, V Agubra, X Xiao, M Alcoutlabi
Advanced Energy Materials 6 (16), 1502159, 2016
Multifunctional TiO2–C/MnO2 Core–Double-Shell Nanowire Arrays as High-Performance 3D Electrodes for Lithium Ion Batteries
JY Liao, D Higgins, G Lui, V Chabot, X Xiao, Z Chen
Nano letters 13 (11), 5467-5473, 2013
Free-Standing Layer-By-Layer Hybrid Thin Film of Graphene-MnO2 Nanotube as Anode for Lithium Ion Batteries
A Yu, HW Park, A Davies, DC Higgins, Z Chen, X Xiao
The Journal of Physical Chemistry Letters 2 (15), 1855-1860, 2011
In situ TEM investigation of congruent phase transition and structural evolution of nanostructured silicon/carbon anode for lithium ion batteries
CM Wang, X Li, Z Wang, W Xu, J Liu, F Gao, L Kovarik, JG Zhang, J Howe, ...
Nano letters 12 (3), 1624-1632, 2012
Tailoring Pore Size of Nitrogen-Doped Hollow Carbon Nanospheres for Confining Sulfur in Lithium-Sulfur Batteries.
W Zhou, C Wang, Q Zhang, HD Abru˝a, Y He, J Wang, SX Mao, X Xiao
Advanced Energy Materials 5 (16), 2015
Ultrathin multifunctional oxide coatings for lithium ion batteries
X Xiao, P Lu, D Ahn
Advanced Materials 34 (23), 3911-3915, 2011
Revealing triple‐shape memory effect by polymer bilayers
T Xie, X Xiao, YT Cheng
Macromolecular Rapid Communications 30 (21), 1823-1827, 2009
Improved cycling stability of silicon thin film electrodes through patterning for high energy density lithium batteries
X Xiao, P Liu, MW Verbrugge, H Haftbaradaran, H Gao
Journal of Power Sources 196 (3), 1409-1416, 2011
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
Low temperature growth of ultrananocrystalline diamond
X Xiao, J Birrell, JE Gerbi, O Auciello, JA Carlisle
Journal of Applied Physics 96 (4), 2232-2239, 2004
Materials science and fabrication processes for a new MEMS technology based on ultrananocrystalline diamond thin films
O Auciello, J Birrell, JA Carlisle, JE Gerbi, X Xiao, B Peng, HD Espinosa
Journal of Physics: Condensed Matter 16 (16), R539, 2004
Toward practical application of functional conductive polymer binder for a high-energy lithium-ion battery design
H Zhao, Z Wang, P Lu, M Jiang, F Shi, X Song, Z Zheng, X Zhou, Y Fu, ...
Nano letters 14 (11), 6704-6710, 2014
Evidence of covalent synergy in silicon–sulfur–graphene yielding highly efficient and long-life lithium-ion batteries
FM Hassan, R Batmaz, J Li, X Wang, X Xiao, A Yu, Z Chen
Nature communications 6 (1), 8597, 2015
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