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首页> 外文期刊>Physica status solidi, B. Basic research >A comparative study of density functional and density functional tight binding calculations of defects in graphene
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A comparative study of density functional and density functional tight binding calculations of defects in graphene

机译:石墨烯缺陷的密度泛函和密度泛函紧密结合计算的比较研究

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摘要

The density functional tight binding approach (DFTB) is well adapted for the study of point and line defects in graphene based systems. After briefly reviewing the use of DFTB in this area, we present a comparative study of defect structures, energies, and dynamics between DFTB results obtained using the dftbcode, and density functional results using the localized Gaussian orbital code, AIMPRO. DFTB accurately reproduces structures and energies for a range of point defect structures such as vacancies and Stone–Wales defects in graphene, as well as various unfunctionalized and hydroxylated graphene sheet edges. Migration barriers for the vacancy and Stone-Wales defect formation barriers are accurately reproduced using a nudged elastic band approach. Finally we explore the potential for dynamic defect simulations using DFTB, taking as an example electron irradiation damage in graphene.
机译:密度泛函紧密结合方法(DFTB)非常适合研究基于石墨烯的系统中的点和线缺陷。在简要回顾了DFTB在该领域的使用后,我们对使用dftbcode获得的DFTB结果与使用局部高斯轨道代码AIMPRO的密度函数结果之间的缺陷结构,能量和动力学进行了比较研究。 DFTB可以精确地复制一系列点缺陷结构的结构和能量,例如石墨烯中的空位和Stone-Wales缺陷,以及各种未官能化和羟基化的石墨烯片边缘。使用微调的松紧带方法可以准确地复制空缺的迁移障碍和Stone-Wales缺陷形成障碍。最后,以石墨烯中电子辐照损伤为例,探讨了使用DFTB进行动态缺陷模拟的潜力。

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