Friction of graphene on a substrate with a cavity defect
Author:
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11431-023-2634-9.pdf
Reference61 articles.
1. Liu S W, Wang H P, Xu Q, et al. Robust microscale superlubricity under high contact pressure enabled by graphene-coated microsphere. Nat Commun, 2017, 8: 14029
2. Lang H, Xu Y, Zhu P, et al. Superior lubrication and electrical stability of graphene as highly effective solid lubricant at sliding electrical contact interface. Carbon, 2021, 183: 53–61
3. Liu J, Wang X, Liu Y, et al. Bioinspired three-dimensional and multiple adsorption effects toward high lubricity of solvent-free graphene-based nanofluid. Carbon, 2022, 188: 166–176
4. Lü P, Feng Y Y, Zhang X Q, et al. Recent progresses in application of functionalized graphene sheets. Sci China Tech Sci, 2010, 53: 2311–2319
5. Geim A K. Graphene: Status and prospects. Science, 2009, 324: 1530–1534
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