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Chenxi Zu
Chenxi Zu
Stanford University, The University of Texas at Austin
Bestätigte E-Mail-Adresse bei stanford.edu
Titel
Zitiert von
Zitiert von
Jahr
Rechargeable lithium–sulfur batteries
A Manthiram, Y Fu, SH Chung, C Zu, YS Su
Chemical reviews 114 (23), 11751-11787, 2014
43942014
Lithium–sulfur batteries: progress and prospects
A Manthiram, SH Chung, C Zu
Advanced materials 27 (12), 1980-2006, 2015
14852015
Balancing surface adsorption and diffusion of lithium-polysulfides on nonconductive oxides for lithium–sulfur battery design
X Tao, J Wang, C Liu, H Wang, H Yao, G Zheng, ZW Seh, Q Cai, W Li, ...
Nature communications 7 (1), 11203, 2016
12222016
Catalytic oxidation of Li2S on the surface of metal sulfides for Li− S batteries
G Zhou, H Tian, Y Jin, X Tao, B Liu, R Zhang, ZW Seh, D Zhuo, Y Liu, ...
Proceedings of the National Academy of Sciences 114 (5), 840-845, 2017
10802017
Thermodynamic analysis on energy densities of batteries
CX Zu, H Li
Energy & Environmental Science 4 (8), 2614-2624, 2011
9802011
Mesoporous Titanium Nitride-Enabled Highly Stable Lithium-Sulfur Batteries.
Z Cui, C Zu, W Zhou, A Manthiram, JB Goodenough
Advanced Materials (Deerfield Beach, Fla.) 28 (32), 6926-6931, 2016
5902016
Hydroxylated graphene-sulfur nanocomposites for high-rate lithium-sulfur batteries
C Zu, A Manthiram
Adv. Energy Mater 3 (8), 1008-1012, 2013
4442013
Solid-State Lithium–Sulfur Batteries Operated at 37 °C with Composites of Nanostructured Li7La3Zr2O12/Carbon Foam and Polymer
X Tao, Y Liu, W Liu, G Zhou, J Zhao, D Lin, C Zu, O Sheng, W Zhang, ...
Nano letters 17 (5), 2967-2972, 2017
4192017
A High Energy Lithium-Sulfur Battery with Ultrahigh-Loading Lithium Polysulfide Cathode and its Failure Mechanism
L Qie, C Zu, A Manthiram
Advanced Energy Materials, 2016
3042016
Improved lithium–sulfur cells with a treated carbon paper interlayer
C Zu, YS Su, Y Fu, A Manthiram
Physical Chemistry Chemical Physics 15 (7), 2291-2297, 2013
2762013
Free-standing TiO2 nanowire-embedded graphene hybrid membrane for advanced Li/dissolved polysulfide batteries
G Zhou, Y Zhao, C Zu, A Manthiram
Nano Energy 12, 240-249, 2015
2632015
Stabilized lithium–metal surface in a polysulfide-rich environment of lithium–sulfur batteries
C Zu, A Manthiram
The journal of physical chemistry letters 5 (15), 2522-2527, 2014
1722014
Insight into lithium–metal anodes in lithium–sulfur batteries with a fluorinated ether electrolyte
C Zu, N Azimi, Z Zhang, A Manthiram
Journal of Materials Chemistry A 3 (28), 14864-14870, 2015
1682015
In Situ-Formed Li2S in Lithiated Graphite Electrodes for Lithium–Sulfur Batteries
Y Fu, C Zu, A Manthiram
Journal of the American Chemical Society 135 (48), 18044-18047, 2013
1632013
Sulfiphilic nickel phosphosulfide enabled Li2S impregnation in 3D graphene cages for Li-S batteries
G Zhou, J Sun, Y Jin, W Chen, C Zu, R Zhang, Y Qiu, J Zhao, D Zhuo, ...
Advanced Materials 29 (12), 2017
1552017
Quantitative investigation of polysulfide adsorption capability of candidate materials for Li-S batteries
DS Wu, F Shi, G Zhou, C Zu, C Liu, K Liu, Y Liu, J Wang, Y Peng, Y Cui
Energy Storage Materials 13, 241-246, 2018
1502018
Highly reversible Li/dissolved polysulfide batteries with binder-free carbon nanofiber electrodes
C Zu, Y Fu, A Manthiram
Journal of Materials Chemistry A 1 (35), 10362-10367, 2013
1452013
Activated Li2S as a High-Performance Cathode for Rechargeable Lithium–Sulfur Batteries
C Zu, M Klein, A Manthiram
The journal of physical chemistry letters 5 (22), 3986-3991, 2014
1092014
Breaking down the crystallinity: the path for advanced lithium batteries
C Zu, A Dolocan, P Xiao, S Stauffer, G Henkelman, A Manthiram
Advanced Energy Materials 6 (5), 1501933, 2016
862016
Enabling the thermal stability of solid electrolyte interphase in Li‐ion battery
C Zu, H Yu, H Li
InfoMat 3 (6), 648-661, 2021
752021
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