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Interaction between graphene layers and the mechanisms of graphite's superlubricity and self-retraction

机译:和石墨烯之间的交互层石墨的superlubricity和机制self-retraction

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摘要

Graphene layer-layer interaction is explored as a function of the misorientation angle. A stepwise potential energy surface (PES), where the optimized commensurate configuration (AB stacking) corresponds to the global minimum and all incommensurate configurations correspond to nearly equal energies, is shown. The stepwise behavior is attributed to the alternating appearance of AB and AA stacking-like areas and the transition areas between them. Further, the PES of most incommensurate configurations is found to be ultra-smooth. Based on this, the puzzling experimental observation of graphite flake self-retraction is successfully explained.
机译:石墨烯layer-layer交互是探索错位角的函数。势能面(PES),优化的配置(AB叠加)对应全球最低对应于不相称的所有配置近相等的能量,显示。行为是由于交替AB和AA stacking-like领域它们之间的过渡区域。PES的大部分不相称的配置发现跟。石墨的令人费解的实验观察片状self-retraction成功地解释道。

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