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First-principles prediction of enhancing graphene/Al interface bonding strength by graphene doping strategy

机译:通过石墨烯掺杂策略提高石墨烯/ Al界面粘合强度的第一原理预测

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In this research work, first-principles calculation method is performed to investigate the effects of atomic doping in graphene on the graphene/Al interface bonding properties. It is found that the bonding strength of Al(1 1 1)/perfect graphene/Al(1 1 1) interface is extremely weak (only 0.063 J/m(2)) due to the limited charge redistribution on the interface. The atomic doping (including N-doping, B-doping and B-N co-doping) in graphene could obviously enhance the Al(1 1 1)/graphene/Al(1 1 1) interface bonding strength with more than ten times, the improvement effect increases with the enhancement of doping concentration and the N-B co-doping in graphene has the best improvement effect at the same doping concentration. The reason why the N-doping or B-doping in graphene could obviously enhance the interface bonding strength is that the doped atom could cause the pronounced hybridization between a more delocalized Al-3p states and the 2p states of both the doped atoms and their neighboring C atoms. For the N-B co-doping case, more specifically, the strong interaction between the doped-N and doped-B atoms could weaken the interactions of their neighboring C atoms, resulting in the further enhancement of interaction between interfacial Al atoms and C atoms neighboring the doped atom. This study could provide an efficient way of modifying the graphene/Al interface to improve the mechanical properties of graphene/Al composites.
机译:在该研究工作中,进行第一原理计算方法以研究原子掺杂在石墨烯对石墨烯/ Al界面键合性能的影响。结果发现,由于接口上的电荷再分布,Al(111)/完美的石墨烯/ Al(111)界面的粘合强度极弱(仅0.063 J / m(2))。石墨烯中的原子掺杂(包括N-掺杂,B掺杂和BN共掺杂)可明显增强Al(111)/石墨烯/ Al(111)界面粘合强度,提高了10倍,改善效果随着掺杂浓度的提高而增加,并且石墨烯中的Nb共掺杂在相同的掺杂浓度下具有最佳的改善效果。石墨烯中的N-掺杂或B掺杂的原因可以显然提高界面粘合强度,即掺杂原子可能导致更划分的Al-3P状态和掺杂原子和其邻近的2P状态之间的发音杂交C原子。对于Nb共掺杂情况,更具体地,掺杂-N和掺杂-B原子之间的强相互作用可以削弱其相邻的C原子的相互作用,导致界面Al原子和C原子之间相邻的相互作用进一步增强掺杂原子。该研究可以提供改性石墨烯/ Al界面以改善石墨烯/ Al复合材料的机械性能的有效方法。

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