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首页> 外文期刊>Multidiscipline modeling in materials and structures >Elastic moduli of boron nitride, aluminium nitride and gallium nitride nanotubes using second generation reactive empirical bond order potential
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Elastic moduli of boron nitride, aluminium nitride and gallium nitride nanotubes using second generation reactive empirical bond order potential

机译:使用第二代反应性经验键序势的氮化硼,氮化铝和氮化镓纳米管的弹性模量

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Purpose - The purpose of this paper is to study elastic properties of Ⅲ-Ⅴ nitride nanotubes (NNTs) using second generation (REBO) potential. Design/methodology/approach - In the present research paper elastic properties of BN, AlN and GaN nanotubes have been investigated, using the second generation REBO potential by Brenner and co-workers, which is a bond order potential earlier used for carbon nanostructures successfully. In the present calculation, the same form of potential is used with adjusted parameters for h-BN, h-AlN and h-GaN. In all these cases the authors have considered graphite like network and strongly polar nature of these atoms so electrostatic forces are expected to play an important role in determining elastic properties of these nanotubes. The authors generate the coordinates of nanotubes of different chirality's and size. Each and every structure thus generated is allowed to relax till the authors obtain minima of energy. The authors then apply the requisite compressions, elongations and twists to the structures and compute the elastic moduli. Young's Modulus, Shear Modulus and Poisson's ratio for single-walled armchair and zigzag tubes of different chirality's and size have been calculated. The computational results show the variation of Young's Modulus, Poisson's ratio and Shear Modulus for these NNTs with nanotube diameter. The results have been compared with available data, experimental as well as theoretical. Findings - The authors have calculated bond length, cohesive energy/bond, Strain energy, Young's Modulus, Shear Modulus and Poisson's ratio. Originality/value - To the best of the knowledge this work is the first attempt to study elastic properties of Ⅲ-Ⅴ NNTs using second generation REBO potential.
机译:目的-本文的目的是利用第二代(REBO)电势研究Ⅲ-Ⅴ族氮化物纳米管(NNT)的弹性。设计/方法/方法-在本研究论文中,使用Brenner和同事的第二代REBO电势研究了BN,AlN和GaN纳米管的弹性,该电势是较早成功用于碳纳米结构的键序电势。在本计算中,将相同形式的电势与h-BN,h-AlN和h-GaN的调整参数一起使用。在所有这些情况下,作者都考虑了类似石墨的网络和这些原子的强极性性质,因此预计静电力将在确定这些纳米管的弹性方面起重要作用。作者生成了具有不同手性和大小的纳米管的坐标。这样产生的每个结构都可以放松,直到作者获得最小的能量。然后,作者将必要的压缩,伸长和扭曲应用于结构并计算弹性模量。计算了不同手性和尺寸的单壁扶手椅和曲折管的杨氏模量,剪切模量和泊松比。计算结果表明,这些NNTs随纳米管直径的变化,其杨氏模量,泊松比和剪切模量的变化。将结果与现有数据,实验数据和理论数据进行了比较。研究结果-作者计算了键长,内聚能/键,应变能,杨氏模量,剪切模量和泊松比。原创性/价值-尽其所知,这项工作是首次尝试使用第二代REBO电势研究Ⅲ-Ⅴ型NNT的弹性性能。

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