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Jianjun Mao
Jianjun Mao
The University of Hong Kong; Hong Kong Quantum AI Lab;HNU school of phyics
在 connect.hku.hk 的电子邮件经过验证
标题
引用次数
引用次数
年份
Vacancy manipulation for thermoelectric enhancements in GeTe alloys
X Zhang, J Li, X Wang, Z Chen, J Mao, Y Chen, Y Pei
Journal of the American Chemical Society 140 (46), 15883-15888, 2018
2182018
Dilute Cu2Te-alloying enables extraordinary performance of r-GeTe thermoelectrics
Z Bu, W Li, J Li, X Zhang, J Mao, Y Chen, Y Pei
Materials Today Physics 9, 100096, 2019
1002019
Efficient electroreduction of CO2 to CO by Ag-decorated S-doped g-C3N4/CNT nanocomposites at industrial scale current density
J Chen, Z Wang, H Lee, J Mao, CA Grimes, C Liu, M Zhang, Z Lu, Y Chen, ...
Materials Today Physics 12, 100176, 2020
582020
Hydrovoltaic energy harvesting from moisture flow using an ionic polymer–hydrogel–carbon composite
C Liu, S Wang, X Wang, J Mao, Y Chen, NX Fang, SP Feng
Energy & Environmental Science 15 (6), 2489-2498, 2022
492022
High‐Energy SWCNT Cathode for Aqueous Al‐Ion Battery Boosted by Multi‐Ion Intercalation Chemistry
W Pan, Y Zhao, J Mao, Y Wang, X Zhao, KW Leong, S Luo, X Liu, H Wang, ...
Advanced Energy Materials 11 (39), 2101514, 2021
412021
Mechanical alloying boosted SnTe thermoelectrics
Z Chen, Q Sun, F Zhang, J Mao, Y Chen, M Li, ZG Chen, R Ang
Materials Today Physics 17, 100340, 2021
412021
Near-room-temperature rhombohedral Ge1-xPbxTe thermoelectrics
Z Bu, Z Chen, X Zhang, S Lin, J Mao, W Li, Y Chen, Y Pei
Materials Today Physics 15, 100260, 2020
392020
High‐Performance MnO2/Al Battery with In Situ Electrochemically Reformed AlxMnO2 Nanosphere Cathode
W Pan, J Mao, Y Wang, X Zhao, KW Leong, S Luo, Y Chen, DYC Leung
Small Methods 5 (9), 2100491, 2021
342021
Surface lattice modulation through chemical delithiation toward a stable nickel-rich layered oxide cathode
SQ Lu, Q Zhang, F Meng, YN Liu, J Mao, S Guo, MY Qi, YS Xu, Y Qiao, ...
Journal of the American Chemical Society 145 (13), 7397-7407, 2023
312023
The stability of TiC surfaces in the environment with various carbon chemical potential and surface defects
J Mao, S Li, Y Zhang, X Chu, Z Yang
Applied Surface Science 386, 202-209, 2016
212016
Density functional study on the mechanism for the highly active palladium monolayer supported on titanium carbide for the oxygen reduction reaction
J Mao, S Li, Y Zhang, X Chu, Z Yang
The Journal of Chemical Physics 144 (20), 2016
212016
Black arsenene as a promising anisotropic sensor with high sensitivity and selectivity: insights from a first-principles investigation
J Mao, Y Chen
Journal of Materials Chemistry C 8 (12), 4073-4080, 2020
202020
A First-Principles Study of O2 Dissociation on Platinum Modified Titanium Carbide: A Possible Efficient Catalyst for the Oxygen Reduction Reaction
S Wang, X Chu, X Zhang, Y Zhang, J Mao, Z Yang
The Journal of Physical Chemistry C 121 (39), 21333-21342, 2017
182017
Bimetallic Ag–Cu nanosheets assembled flower-like structure for oxygen reduction reaction
J Chen, Z Wang, J Mao, C Liu, Y Chen, Z Lu, SP Feng
Journal of Alloys and Compounds 856, 157379, 2021
162021
Interactions of small platinum clusters with the TiC (001) surface
J Mao, S Li, X Chu, Z Yang
Journal of Applied Physics 118 (18), 2015
152015
First principles study on the adsorption of Au dimer on metal-oxide surfaces: The implications for Au growing
S Dong, Y Zhang, X Zhang, J Mao, Z Yang
Applied Surface Science 426, 554-561, 2017
142017
Strain-engineered black arsenene as a promising gas sensor for detecting SO2 among SF6 decompositions
J Mao, Y Chen
Nanotechnology 32 (6), 065501, 2020
102020
High Stability and Reactivity of Single-Metal Atom Catalysts Supported on Yttria-Stabilized Zirconia: The Role of the Surface Oxygen Vacancy
S Dong, Y Zhang, X Zhang, J Mao, Z Yang
The Journal of Physical Chemistry C 122 (3), 1622-1630, 2018
102018
First-principles investigation of H 2 S adsorption and dissociation on titanium carbide surfaces
S Wang, X Zhang, Y Zhang, J Mao, Z Yang
Physical Chemistry Chemical Physics 19 (39), 27116-27122, 2017
102017
ZnS-Nanoparticle-Coated Carbon Cloth as an Efficient Interlayer for High-Performance Li–S Batteries
R Liu, W Tao, Y Du, C Wu, H Ye, M Fan, S Chen, GH Chen, J Mao, S Xin, ...
ACS Applied Energy Materials 5 (10), 12408-12414, 2022
92022
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