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Multiscale computations for carbon nanotubes based on a hybrid QM/QC (quantum mechanical and quasicontinuum) approach

机译:基于混合QM / QC(量子力学和准连续谱)方法的碳纳米管多尺度计算

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摘要

An effective multiscale computing scheme based on QM/QC (quantum mechanics/ quasicontinuum) is applied for simulation of Carbon nanotubes (CNTS) mechanics. First, quasicontinuum simulation of deformations of curved crystalline structures is conducted to examine the fully nonlocal behavior of CNTs with the aid of high-order interpolation functions and the "cluster" concept, which facilitates accurate energy approximation for crystals. Next, a multiscale computing approach based on QM/QC hybridization is devised, and applied for simulation of CNT mechanics. The bonding configuration changes, e.g. bond breaking or creation, near defect sites are correctly represented with the QM/QC hybrid model. For studying electronic properties coupled with the mechanical deformation of CNTs, the change of the electrical properties from an initial semiconductor into metal under mechanical bending is investigated. Single-walled CNTs having various types of defects and subjected to uniaxial tension are considered for fracture. The theoretical strength of the CNTs in the presence of each defect is computed based on the QM/QC hybrid scheme, wherein the defect neighborhood is modeled as a QM zone for a first-principle-based calculation using density functional theory (DFT), and the remaining area as a QC zone. This multiscale computing approach greatly improves the accuracy in the prediction of the failure strains of CNTs over a purely molecular mechanical or quasicontinuum method.
机译:将基于QM / QC(量子力学/准连续谱)的有效多尺度计算方案应用于碳纳米管(CNTS)力学仿真。首先,借助高阶插值函数和“簇”概念,对弯曲晶体结构的变形进行了准连续谱模拟,以检查CNT的完全非局部行为,该概念有助于晶体的精确能量近似。接下来,设计了一种基于QM / QC杂交的多尺度计算方法,并将其应用于CNT力学模拟。绑定配置会更改,例如用QM / QC混合模型正确表示缺陷位置附近的键断裂或产生。为了研究与CNT的机械变形有关的电子性能,研究了在机械弯曲下从初始半导体到金属的电性能变化。具有各种缺陷并且经受单轴拉伸的单壁CNT被认为是断裂的。基于QM / QC混合方案计算存在每个缺陷时CNT的理论强度,其中使用密度泛函理论(DFT)将缺陷邻域建模为QM区域,用于基于第一原理的计算,以及其余区域作为QC区域。通过纯分子机械或准连续谱方法,这种多尺度计算方法极大地提高了碳纳米管失效应变预测的准确性。

著录项

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  • 作者单位

    Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Science Town, Daejeon, Republic of Korea;

    Korea Research Institute of Chemical Technology (KRICT), Science Town, Deajeon, Republic of Korea;

    Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Science Town, Daejeon, Republic of Korea;

    Korea Research Institute of Chemical Technology (KRICT), Science Town, Deajeon, Republic of Korea;

    Korea Research Institute of Chemical Technology (KRICT), Science Town, Deajeon, Republic of Korea;

    Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Science Town, Daejeon, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Fracture; B. Carbon nanotubes; C. Quasicontinuum; D. Multiscale computing;

    机译:A.骨折;B.碳纳米管;C.准连续谱;D.多尺度计算;
  • 入库时间 2022-08-18 03:00:18

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