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- W3176303390 abstract "• The defective graphene can be repaired by defective-free graphene patch using the interlayer cross-linkings. • The density of cross-linking and area ratio of patch to hole is important to repair efficiency. • The optimal repair efficiency of repaired graphene can reach 1.87. The existence of defects such as intrinsic cracks and holes will greatly weaken the excellent mechanical behaviors of graphene sheets. In order to improve the mechanical properties of defective graphene (DG), this paper reports a novel nano-repair strategy that the interlayer cross-linkings are regarded as glue to bond defect-free graphene patch on DG. A systematic computational study on tensile strength of the repaired graphene (RG) has been performed using molecular dynamics (MD) simulations. It was found that, the optimal repair efficiency can reach 1.87. Furthermore, the shape of patch plays an important role on repair efficiency as well. This paper proves the repairability of the tensile strength of graphene with hole defects, and innovatively proposes the strengthening method of DG to optimize mechanical properties." @default.
- W3176303390 created "2021-07-05" @default.
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- W3176303390 date "2021-09-01" @default.
- W3176303390 modified "2023-10-17" @default.
- W3176303390 title "The strategy of repairing defective graphene by graphene patch via interlayer cross-linking" @default.
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- W3176303390 doi "https://doi.org/10.1016/j.commatsci.2021.110645" @default.
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