[1] Z. Cheng, H. Feng, Y. Lu, Z. Lu, Q.-C. He*. Electron-Scale Origin of Friction in Structural Superlubricity. Tribology International, 2025, 202: 110294. (SCI, 一区TOP,IF: 6.1) [2] Z. Cheng, J. Sun, B. Zhang, Z. Lu*, F. Ma, G. Zhang*, and Q. Xue. Strain effects of vertical separation and horizontal sliding in commensurate two-dimensional homojunctions, Journal of Physical Chemistry Letters, 2020,11(14): 5815-5822. (SCI, 一区TOP,IF: 6.475) [3] Z. Cheng, X. An, J. W, B. Zhang, Z. Lu*, G. Zhang*. Electrons distribution competition: A negative correlation between relative potential energy and bandgap in hexagonal boron nitride, Tribology International, 2020, 141: 105961. (SCI, 一区TOP,IF: 4.872) [4] H. Feng, Z. Cheng*, Z. Lu, Q.-C. He*, Investigating lubrication capacities of novel 2D hexagonal materials by DFT simulations, Tribology International, 2025, 204: 110475. (SCI, 一区TOP,IF: 6.1) [5] Z. Cheng, S. Du, J. Sun*. Enhancing graphene's resistance to oxidative corrosion by positive charge doping: A DFT view, Applied Surface Science, 2023, 633: 157622. (SCI, 二区TOP,IF: 6.3) [6] Z. Cheng, B. Zhang, X. An, Z. Lu*, G. Zhang, F. Ma*, F. Zhou. First-Principles Delimitation of theBoundary between Intralayer and Interlayer in Two-dimensional Structures, Journal of Physical Chemistry C, 2019, 123(44): 24565-24571. (SCI, 二区TOP,IF: 4.189) [7] H. Feng, Z. Cheng*, T. Yang, Z. Lu and Q.-C. He*. Attraction-induced superlubricity and its detection. Applied Surface Science, 2023, 640: 158423. (SCI, 二区TOP,IF: 6.3) [8] J. Sun, Z. Cheng*, Q. Huang, H. He, J. S. Francisco, S. Du*. Universal Principle for Large-Scale Production of a High-Quality Two-Dimensional Monolayer via Positive Charge-Driven Exfoliation, Journal of Physical Chemistry Letters, 2022, 13(28): 6597-6603. (SCI, 二区,IF: 5.7) [9] Z. Cheng, H. Feng, J. Sun*, Z. Lu, Q.-C. He*. Strain-Driven Superlubricity of Graphene/Graphene in Commensurate Contact, Advanced Materials Interfaces, 2023, 10(10): 2202062. (SCI, 三区,IF: 4.3) [10] Z. Cheng, J. Sun, B. Zhang, Z. Lu*, F. Ma, and Q.-C. He*. Superlubricity Enabled by Load-Driven Redistribution of Electrons, Advanced Materials Interfaces 2022, 9(9): 2101589. (SCI, 三区,IF: 5.4) |