MOLECULAR DYNAMICS STUDY ON THERMAL RESISTANCE BETWEEN AMORPHOUS SILICA NANOPARTICLES

被引:0
|
作者
Meng, Fanhe [1 ]
Liu, Jin [1 ]
Richards, Robert. F. [1 ]
机构
[1] Washington State Univ, Sch Mech & Mat Engn, Pullman, WA 99164 USA
来源
PROCEEDINGS OF THE ASME SUMMER HEAT TRANSFER CONFERENCE, 2017, VOL 2 | 2017年
关键词
MD simulations; Amorphous silica; Nanoparticle; Thermal resistance; CONDUCTIVITY; INSULATION; HEAT; NANOSPHERES; CONTACT; SURFACE; FORCES; SOLIDS; BEDS;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
Nanoparticle-based materials have demonstrated extremely low thermal conductivities, a property that has made them attractive candidates in a variety of macroscale and microscale applications. Understanding the thermal transport between nanoparticles is necessary for the further development of these materials. Molecular dynamics simulation is an effective method to investigate thermal transport on these scales because no assumption about phonon transmission at the nanoparticle interface, nor prior knowledge of thermal transport of the system is necessary. In this work, the total thermal resistance between adjacent amorphous silica nanoparticles is calculated using non equilibrium molecular dynamics simulations (NEMD). Numerical results show that interparticle resistance depends strongly on the forces between particles, in particular the presence or absence of chemical bonds between nanoparticles. In addition, the effect of interfacial force strength on thermal resistance increases as nanoparticle diameter decreases. Numerical results are compared to interparticle resistances determined from the predictions of the analytical constriction resistance model. The simulation results are shown to be in good agreement the constriction resistance theory depending on the choice of surface energy.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Tribochemical Mechanism of Amorphous Silica Asperities in Aqueous Environment: A Reactive Molecular Dynamics Study
    Yue, Da-Chuan
    Ma, Tian-Bao
    Hu, Yuan-Zhong
    Yeon, Jejoon
    van Duin, Adri C. T.
    Wang, Hui
    Luo, Jianbin
    LANGMUIR, 2015, 31 (04) : 1429 - 1436
  • [22] Molecular dynamics study of interface thermal resistance in asymmetric nanochannel
    Mei Tao
    Chen Zhan-Xiu
    Yang Li
    Zhu Hong-Man
    Miao Rui-Can
    ACTA PHYSICA SINICA, 2020, 69 (22)
  • [23] Significant Anharmonicity of Thermal Transport in Amorphous Silica at High Temperature
    Yang, Lei
    Cao, Bing-Yang
    PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2022, 16 (11):
  • [24] Molecular dynamics simulation of water confined in a nanopore of amorphous silica
    Zhang, Qingyin
    Chan, Kwong-Yu
    Quirke, Nicholas
    MOLECULAR SIMULATION, 2009, 35 (15) : 1215 - 1223
  • [25] Role of electronic thermal transport in amorphous metal recrystallization: A molecular dynamics study
    McClure, Zachary D.
    Reeve, Samuel Temple
    Strachan, Alejandro
    JOURNAL OF CHEMICAL PHYSICS, 2018, 149 (06)
  • [26] Molecular dynamics simulation of wetting on modified amorphous silica surface
    Chai, Jingchun
    Liu, Shuyan
    Yang, Xiaoning
    APPLIED SURFACE SCIENCE, 2009, 255 (22) : 9078 - 9084
  • [27] Thermal Stability of Hollow Porous Gold Nanoparticles: A Molecular Dynamics Study
    Valencia, Felipe J.
    Ramirez, Max
    Varas, Alejandro
    Rogan, Jose
    Kiwi, Miguel
    JOURNAL OF CHEMICAL INFORMATION AND MODELING, 2020, 60 (12) : 6204 - 6210
  • [28] A FACILE SYNTHESIS OF AMORPHOUS SILICA NANOPARTICLES BY SIMPLE THERMAL TREATMENT ROUTE
    Alibe, I. M.
    Matori, K. A.
    Saion, E.
    Alibe, A. M.
    Zaid, M. H. M.
    Engku, E. A. A. Ghapur
    DIGEST JOURNAL OF NANOMATERIALS AND BIOSTRUCTURES, 2016, 11 (04) : 1155 - 1164
  • [29] Molecular Dynamics Study of the Electric Double Layer and Nonlinear Spectroscopy at the Amorphous Silica Water Interface
    Chen, Si-Han
    Singer, Sherwin J.
    JOURNAL OF PHYSICAL CHEMISTRY B, 2019, 123 (29) : 6364 - 6384
  • [30] Thermal conductance at the interface between crystals using equilibrium and nonequilibrium molecular dynamics
    Merabia, Samy
    Termentzidis, Konstantinos
    PHYSICAL REVIEW B, 2012, 86 (09):