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Updated: Jan 16, 2026

Advanced Self-Healing Asphalt Reinforced by Graphene Structures: An Atomistic Insight
Published on: May 31, 2022
Spontaneous Closing of Torn Bilayer Graphene Edges via a Self-Healing Mechanism
Xueyan Li1, Yuang Li1, Jiaqi Yang1
1Center for Spintronics and Quantum Systems, State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, China.
Abstract:
The electronic transport properties of nanoscale patterned graphene are significantly influenced by its edge structures. Herein, we report a self-healing phenomenon of freshly torn bilayer graphene edges based on in situ scanning tunneling microscopy observations. The fresh bilayer edges are created in the surface graphene layers by tip-induced field evaporation. Surprisingly, atomic resolution images reveal the spontaneous formation of a half-tubular structure that seamlessly connects the upper and lower layers, identical to the edge of a folded monolayer graphene. It is attributed to a self-healing mechanism of open bilayer edges in aligned zigzag (or armchair) direction, where the transient edge carbon radicals evolve into sp2 hybridized C-C bonds between neighboring layers. For armchair edges, the original AB stacking can be locked into the AA stacking due to required sliding of carbon atoms. This finding opens up an atomic precision edge engineering method of patterned graphene for devices.
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