The determination of temperature stability of silver nanotubes by the molecular dynamics simulation

被引:0
|
作者
O. Filatov
S. Soldatenko
O. Soldatenko
机构
[1] G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine,Metal Physics Department, Faculty of Physical Engineering
[2] National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”,undefined
来源
Applied Nanoscience | 2019年 / 9卷
关键词
Silver; Nanotube; Thermal expansion; Molecular dynamics simulation;
D O I
暂无
中图分类号
学科分类号
摘要
Molecular dynamics simulation using the embedded-atom method is applied to study thermal stability of silver nanotubes and its coefficient of linear thermal expansion. The correspondence of face centered cubic structure potential for this task is tested. Three types of nanotubes are modelled: scrolled from graphene-like plane, scrolled from plane with cubic structure and cut from cylinder. It is established that only the last two of them are stable. The last one describes in details. There is critical temperature when free ends of the nanotube close but the interior surface retains. At higher temperatures, the interior surface collapses and the nanotube is unstable.
引用
收藏
页码:853 / 857
页数:4
相关论文
共 50 条
  • [41] Molecular dynamics simulation of carbon nanotubes under elevated temperatures
    Ebrahimi-Nejad, S.
    Shokuhfar, A.
    Zare-Shahabadi, A.
    Heydari, P.
    MATERIALWISSENSCHAFT UND WERKSTOFFTECHNIK, 2010, 41 (05) : 314 - 319
  • [42] Molecular dynamics simulation of self-assembled carbon nanotubes
    Wei, Dawei
    Guo, Wanlin
    INTERNATIONAL JOURNAL OF NANOSCIENCE, VOL 5, NO 6, 2006, 5 (06): : 835 - +
  • [43] Bending Solutions of Cantilever Carbon Nanotubes and Molecular Dynamics Simulation
    Liang, Yingjing
    Han, Qiang
    Ou, Jianhua
    JOURNAL OF COMPUTATIONAL AND THEORETICAL NANOSCIENCE, 2014, 11 (01) : 71 - 75
  • [44] Transport Properties of RNA Nanotubes Using Molecular Dynamics Simulation
    Badu, Shyam R.
    Melnik, Roderik
    Prabhakar, Sanjay
    BIOINFORMATICS AND BIOMEDICAL ENGINEERING (IWBBIO 2015), PT II, 2015, 9044 : 578 - 583
  • [45] Spontaneous nanoinjection with carbon nanotubes: a molecular dynamics simulation study
    Xing, Yan-Fei
    Yang, Chuan-Lu
    Mo, Yong-Fang
    Wang, Mei-Shan
    Ma, Xiao-Guang
    JOURNAL OF MATERIALS CHEMISTRY B, 2014, 2 (07) : 859 - 867
  • [46] Temperature-dependent deformation in silver-particle-covered copper nanowires by molecular dynamics simulation
    Li, Pengtao
    Yang, Y. Q.
    Koval, Vladimir
    Luo, Xian
    Chen, Jianxin
    Zhang, Wei
    Lin, E. Emily
    Wang, Bowen
    Yan, Haixue
    JOURNAL OF MATERIOMICS, 2022, 8 (01) : 68 - 78
  • [47] EVALUATION OF TEMPERATURE IN MOLECULAR-DYNAMICS SIMULATION
    AMINI, M
    FINCHAM, D
    COMPUTER PHYSICS COMMUNICATIONS, 1990, 56 (03) : 313 - 324
  • [48] Temperature determination using molecular spectra simulation
    Pellerin, S
    Koulidiati, J
    Motret, O
    Musiol, K
    De Graaf, M
    Pokrzywka, B
    Chapelle, J
    HIGH TEMPERATURE MATERIAL PROCESSES, 1997, 1 (04): : 493 - 509
  • [49] Molecular Behavior of Water on Titanium Dioxide Nanotubes: A Molecular Dynamics Simulation Study
    Cao, Wei
    Lu, Linghong
    Huang, Liangliang
    Dong, Yihui
    Lu, Xiaohua
    JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2016, 61 (12): : 4131 - 4138
  • [50] Stability of a Crystal at Temperatures below the Temperature of the End Point of the Melting Line: Molecular Dynamics Simulation
    Baidakov, V. G.
    Protsenko, S. P.
    HIGH TEMPERATURE, 2021, 59 (01) : 62 - 65