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Ziwen Cheng
Ziwen Cheng
在 my.swjtu.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Atomic-scale friction adjustment enabled by doping-induced modification in graphene nanosheet
B Zhang, G Zhang, Z Cheng, F Ma, Z Lu
Applied Surface Science 483, 742-749, 2019
362019
First-principles delimitation of the boundary between intralayer and interlayer in two-dimensional structures
Z Cheng, B Zhang, X An, Z Lu, G Zhang, F Ma, F Zhou
The Journal of Physical Chemistry C 123 (44), 26912-26920, 2019
192019
Alternative friction mechanism for amorphous carbon films sliding against alumina
J Wang, F Wang, Z Cheng, G Zhang, Z Lu, Q Xue
Industrial & Engineering Chemistry Research 58 (12), 4810-4817, 2019
172019
First-principles theory of atomic-scale friction explored by an intuitive charge density fluctuation surface
B Zhang, Z Cheng, G Zhang, Z Lu, F Ma, F Zhou
Physical Chemistry Chemical Physics 21 (44), 24565-24571, 2019
162019
Ultra-low friction of graphene/honeycomb borophene heterojunction
Y Xu, Z Cheng, X Zhu, Z Lu, G Zhang
Tribology Letters 69, 1-8, 2021
142021
Tuning the electronic structure of hexagonal boron nitride by carbon atom modification: a feasible strategy to reduce sliding friction
Z Cheng, G Zhang, B Zhang, F Ma, Z Lu
Materials Research Express 6 (3), 036306, 2019
132019
Strain effects of vertical separation and horizontal sliding in commensurate two-dimensional homojunctions
Z Cheng, J Sun, B Zhang, Z Lu, F Ma, G Zhang, Q Xue
The Journal of Physical Chemistry Letters 11 (14), 5815-5822, 2020
122020
Electrons distribution competition: A negative correlation between relative potential energy and bandgap in hexagonal boron nitride
Z Cheng, X An, J Wang, B Zhang, Z Lu, G Zhang
Tribology International 141, 105961, 2020
122020
Superlubricity Enabled by Load‐Driven Redistribution of Electrons
Z Cheng, J Sun, B Zhang, Z Lu, F Ma, QC He
Advanced Materials Interfaces 9 (9), 2101589, 2022
102022
Atomic-scale rolling friction and charge-transfer mechanism: an integrated study of physical deductions and DFT simulations
B Zhang, Z Cheng, Z Lu, G Zhang, F Ma
The Journal of Physical Chemistry C 124 (15), 8431-8438, 2020
102020
Strain‐Driven Superlubricity of Graphene/Graphene in Commensurate Contact
Z Cheng, H Feng, J Sun, Z Lu, QC He
Advanced Materials Interfaces 10 (10), 2202062, 2023
82023
First principles study of atmospheric pollutants adsorption on non-defect and monatomic defect graphene
X Zhu, Y Xu, Z Cheng, Y Wang, Z Lu, G Zhang
Diamond and Related Materials 112, 108252, 2021
82021
Universal Principle for Large-Scale Production of a High-Quality Two-Dimensional Monolayer via Positive Charge-Driven Exfoliation
J Sun, Z Cheng, Q Huang, H He, JS Francisco, S Du
The Journal of Physical Chemistry Letters 13 (28), 6597–6603, 2022
62022
A novel ultra-low friction heterostructure: Aluminum substrate-honeycomb borophene/graphene heterojunction
Y Xu, X Zhu, Z Cheng, Z Lu, W He, G Zhang
Computational Materials Science 205, 111236, 2022
62022
Effect of strain on the tribological properties of honeycomb borophene/graphene heterostructures: An electronic hierarchical understanding of ultra-low friction
Y Xu, X Zhu, Z Cheng, Z Lu, W He, G Zhang
Tribology International 174, 107707, 2022
52022
Explanation of the microscopic mechanism of h-BN isostructural transformation under biaxial strain
Y Niu, Z Cheng, Y Xu, Z Lu, G Zhang
Materials Today Communications 27, 102391, 2021
52021
Borophene: Provides the Possibility to Observe the Behavior of a Negative Friction Coefficient in a Rigid Interface
Y Xu, X Zhu, Z Cheng, Z Lu, W He, G Zhang
Tribology Letters 70 (2), 45, 2022
22022
Insights into the efficient water treatment over N-doped carbon nanosheets with layered minerals as template: The role of interfacial electron tunneling and transfer
Z Cheng, K Yin, X Xu, Q Yue, B Gao, Y Gao
Journal of Hazardous Materials 469, 133924, 2024
12024
Attraction-Induced superlubricity and its detection
H Feng, Z Cheng, T Yang, Z Lu, QC He
Applied Surface Science 640, 158423, 2023
12023
How Do Substrates Affect the Friction on Graphene at the Nanoscale?
H Feng, Z Cheng, D Long, T Yang, Z Lu, Q He
Lubricants 11 (11), 465, 2023
12023
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