石墨烯
材料科学
密度泛函理论
各向异性
费米能级
凝聚态物理
电子结构
杂质
电导率
电阻率和电导率
态密度
从头算
Crystal(编程语言)
从头算量子化学方法
碳纤维
局域态密度
晶体结构
热传导
费米能量
铜
复合材料
单晶
电荷密度
戒指(化学)
碳纳米管
压力(语言学)
作者
K. Nepal,Rami Hussein,Yahya Al-Majali,D. A. Drabold
摘要
Coal-derived graphene-like material and its addition to FCC copper are investigated using ab initio plane wave density functional theory (DFT). We explore ring disorder in the sp2 carbon and functional impurities such as oxides (-O) and hydroxides (-OH) that are common in coal-derived graphene. The electronic density of states analysis revealed localized states near the Fermi level, with functional groups contributing predominantly to states below the Fermi level, while carbon atoms in non-hexagonal rings contributed mainly to states above it. The functionalization of graphene induces charge localization, while ring disorder disrupts the continuous flow of electrons. By projecting the electronic conductivity along specific spatial directions, we find that both the crystal orientation and the graphene purity significantly influence the anisotropy and magnitude of electronic transport in the composites. This study implicitly highlights the importance of structural stress to obtain improved electrical conductivity in such composites.
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