Guangwen Zhou
Guangwen Zhou
Professor of Materials Science & Mechanical Engineering, State University of New York at Binghamton
Verified email at - Homepage
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The crystal structural evolution of nano-Si anode caused by lithium insertion and extraction at room temperature
H Li, X Huang, L Chen, G Zhou, Z Zhang, D Yu, YJ Mo, N Pei
Solid State Ionics 135 (1-4), 181-191, 2000
Raman spectral study of silicon nanowires: high-order scattering and phonon confinement effects
R Wang, G Zhou, Y Liu, S Pan, H Zhang, D Yu, Z Zhang
Physical Review B 61 (24), 16827, 2000
Synthesis of boron nitride nanotubes by means of excimer laser ablation at high temperature
DP Yu, XS Sun, CS Lee, I Bello, ST Lee, HD Gu, KM Leung, GW Zhou, ...
Applied Physics Letters 72 (16), 1966-1968, 1998
Synthesis of nano-scale silicon wires by excimer laser ablation at high temperature
DP Yu, CS Lee, I Bello, XS Sun, YH Tang, GW Zhou, ZG Bai, Z Zhang, ...
Solid State Communications 105 (6), 403-407, 1998
Driving force and growth mechanism for spontaneous oxide nanowire formation during the thermal oxidation of metals
L Yuan, Y Wang, R Mema, G Zhou
Acta Materialia 59 (6), 2491-2500, 2011
Conflicting roles of nickel in controlling cathode performance in lithium ion batteries
M Gu, I Belharouak, A Genc, Z Wang, D Wang, K Amine, F Gao, G Zhou, ...
Nano letters 12 (10), 5186-5191, 2012
Nanoarchitecture multi‐structural cathode materials for high capacity lithium batteries
D Wang, I Belharouak, G Zhou, K Amine
Advanced Functional Materials 23 (8), 1070-1075, 2013
Interactions of fungi with concrete: Significant importance for bio-based self-healing concrete
J Luo, X Chen, J Crump, H Zhou, DG Davies, G Zhou, N Zhang, C Jin
Construction and building materials 164, 275-285, 2018
Growth mechanism of Ni0. 3Mn0. 7CO3 precursor for high capacity Li-ion battery cathodes
D Wang, I Belharouak, GM Koenig, G Zhou, K Amine
Journal of Materials Chemistry 21 (25), 9290-9295, 2011
Controlled Li doping of Si nanowires by electrochemical insertion method
GW Zhou, H Li, HP Sun, DP Yu, YQ Wang, XJ Huang, LQ Chen, Z Zhang
Applied Physics Letters 75 (16), 2447-2449, 1999
Effect of surface stresses on CuO nanowire growth in the thermal oxidation of copper
R Mema, L Yuan, Q Du, Y Wang, G Zhou
Chemical Physics Letters 512 (1-3), 87-91, 2011
The origin of hematite nanowire growth during the thermal oxidation of iron
L Yuan, Y Wang, R Cai, Q Jiang, J Wang, B Li, A Sharma, G Zhou
Materials Science and Engineering: B 177 (3), 327-336, 2012
Formation of Quasi-One-Dimensional C u 2 O Structures by in situ Oxidation of Cu (100)
G Zhou, JC Yang
Physical review letters 89 (10), 106101, 2002
Li–Nb–O Coating/Substitution Enhances the Electrochemical Performance of the LiNi0.8Mn0.1Co0.1O2 (NMC 811) Cathode
F Xin, H Zhou, X Chen, M Zuba, N Chernova, G Zhou, MS Whittingham
ACS applied materials & interfaces 11 (38), 34889-34894, 2019
Step-edge-induced oxide growth during the oxidation of Cu surfaces
G Zhou, L Luo, L Li, J Ciston, EA Stach, JC Yang
Physical review letters 109 (23), 235502, 2012
Initial oxidation kinetics of Cu (100),(110), and (111) thin films investigated by in situ ultra-high-vacuum transmission electron microscopy
GW Zhou, JC Yang
JOURNAL OF MATERIALS RESEARCH 20 (7), 1684-1694, 2005
Rock-salt growth-induced (003) cracking in a layered positive electrode for Li-ion batteries
H Zhang, F Omenya, P Yan, L Luo, MS Whittingham, C Wang, G Zhou
ACS Energy Letters 2 (11), 2607-2615, 2017
One-Nanometer-Thick Pt3Ni Bimetallic Alloy Nanowires Advanced Oxygen Reduction Reaction: Integrating Multiple Advantages into One Catalyst
M Gong, Z Deng, D Xiao, L Han, T Zhao, Y Lu, T Shen, X Liu, R Lin, ...
Acs Catalysis 9 (5), 4488-4494, 2019
Temperature effect on the Cu2O oxide morphology created by oxidation of Cu (0 0 1) as investigated by in situ UHV TEM
G Zhou, JC Yang
Applied Surface Science 210 (3-4), 165-170, 2003
Atomic origins of water-vapour-promoted alloy oxidation
L Luo, M Su, P Yan, L Zou, DK Schreiber, DR Baer, Z Zhu, G Zhou, ...
Nature materials 17 (6), 514-518, 2018
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