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Interfacial Strengthening of Graphene/Aluminum Composites through Point Defects: A First-Principles Study

机译:通过点缺陷的石墨烯/铝复合材料的界面强化:第一原理研究

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摘要

The relationship between point defects and mechanical properties has not been fully understood yet from a theoretical perspective. This study systematically investigated how the Stone–Wales (SW) defect, the single vacancy (SV), and the double vacancy (DV) affect the mechanical properties of graphene/aluminum composites. The interfacial bonding energies containing the SW and DV defects were about twice that of the pristine graphene. Surprisingly, the interfacial bonding energy of the composites with single vacancy was almost four times that of without defect in graphene. These results indicate that point defects enhance the interfacial bonding strength significantly and thus improve the mechanical properties of graphene/aluminum composites, especially the SV defect. The differential charge density elucidates that the formation of strong Al–C covalent bonds at the defects is the most fundamental reason for improving the mechanical properties of graphene/aluminum composites. The theoretical research results show the defective graphene as the reinforcing phase is more promising to be used in the metal matrix composites, which will provide a novel design guideline for graphene reinforced metal matrix composites. Furthermore, the sp3-hybridized C dangling bonds increase the chemical activity of the SV graphene, making it possible for the SV graphene/aluminum composites to be used in the catalysis field.
机译:尚未从理论的角度完全理解点缺陷和机械性能之间的关系。本研究系统地研究了石威尔士(SW)缺陷,单空位(SV)和双空位(DV)如何影响石墨烯/铝复合材料的机械性能。含有SW和DV缺陷的界面键合能量是原始石墨烯的两倍。令人惊讶的是,具有单个空位的复合材料的界面键合能量几乎是石墨烯中没有缺陷的四倍。这些结果表明,点缺陷显着提高界面粘合强度,从而改善石墨烯/铝复合材料的机械性能,尤其是SV缺陷。差分电荷密度阐明了缺陷在缺陷处形成强的Al-C共价键是改善石墨烯/铝复合材料的机械性能的最基本原因。理论研究结果表明,由于增强阶段更有前景以在金属基质复合材料中使用,因此缺陷的石墨烯将提供一种用于石墨烯增强金属基质复合材料的新颖设计指南。此外,SP3杂交的C悬挂键增加了SV石墨烯的化学活性,使得SV石墨烯/铝复合材料可以用于催化区域。

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