Effects of surface charges on phonon properties and thermal conductivity in GaN nanofilms

被引:3
|
作者
Yang, Shu-Sen [1 ,2 ,3 ]
Hou, Yang [1 ,2 ]
Zhu, Lin-Li [1 ,2 ]
机构
[1] Zhejiang Univ, Dept Engn Mech, Hangzhou 310027, Zhejiang, Peoples R China
[2] Zhejiang Univ, Key Lab Soft Machines & Smart Devices Zhejiang Pr, Hangzhou 310027, Zhejiang, Peoples R China
[3] Jiangsu Univ Sci & Technol, Sch Naval Architecture & Ocean Engn, Zhenjiang 212000, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
surface charges; GaN nanofilm; elastic model; phonon properties; thermal conductivity; HEAT-CONDUCTION; RELAXATION; HETEROSTRUCTURES; TRANSPORT; STRESS;
D O I
10.1088/1674-1056/28/8/086501
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Surface charges can modify the elastic modulus of nanostructure, leading to the change of the phonon and thermal properties in semiconductor nanostructure. In this work, the influence of surface charges on the phonon properties and phonon thermal conductivity of GaN nanofilm are quantitatively investigated. In the framework of continuum mechanics, the modified elastic modulus can be derived for the nanofilm with surface charges. The elastic model is presented to analyze the phonon properties such as the phonon dispersion relation, phonon group velocity, density of states of phonons in nanofilm with the surface charges. The phonon thermal conductivity of nanofilm can be obtained by considering surface charges. The simulation results demonstrate that surface charges can significantly change the phonon properties and thermal conductivity in a GaN nanofilm. Positive surface charges reduce the phonon energy and phonon group velocity but increase the density of states of phonons. The surface charges can change the size and temperature dependence of phonon thermal conductivity of GaN nanofilm. Based on these theoretical results, one can adjust the phonon properties and temperature/size dependent thermal conductivity in GaN nanofilm by changing the surface charges.
引用
收藏
页数:6
相关论文
共 50 条
  • [31] Thermal Properties and Phonon Spectral Characterization of Synthetic Boron Phosphide for High Thermal Conductivity Applications
    Kang, Joon Sang
    Wu, Huan
    Hu, Yongjie
    NANO LETTERS, 2017, 17 (12) : 7507 - 7514
  • [32] Temperature dependence of the thermal conductivity and phonon scattering time of a bulk GaN crystal
    Kamano, M
    Haraguchi, M
    Niwaki, T
    Fukui, M
    Kuwahara, M
    Okamoto, T
    Mukai, T
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS, 2002, 41 (08): : 5034 - 5037
  • [33] Thermal conductivity of graphene under biaxial strain: an analysis of spectral phonon properties
    Dheeraj, K. V. S.
    Kannam, Sridhar Kumar
    Sathian, Sarith P.
    NANOTECHNOLOGY, 2020, 31 (34)
  • [34] Role of phonon in the thermal and electrical transports in metallic nanofilms
    Feng, Bo
    Li, Zhixin
    Zhang, Xing
    JOURNAL OF APPLIED PHYSICS, 2009, 105 (10)
  • [35] Thermal conductivity of silicon bulk and nanowires: Effects of isotopic composition, phonon confinement, and surface roughness
    Kazan, M.
    Guisbiers, G.
    Pereira, S.
    Correia, M. R.
    Masri, P.
    Bruyant, A.
    Volz, S.
    Royer, P.
    JOURNAL OF APPLIED PHYSICS, 2010, 107 (08)
  • [36] To the question of the thermal conductivity of metallic nanothreads and nanofilms
    Yurov, V. M.
    Ranova, G. A.
    Guchenko, S. A.
    Laurinas, V. Ch
    BULLETIN OF THE UNIVERSITY OF KARAGANDA-PHYSICS, 2018, 4 (92): : 57 - 66
  • [37] Thermal conductivity of GaN
    Kamatagi, M. D.
    Sankeshwar, N. S.
    Mulimani, B. G.
    DIAMOND AND RELATED MATERIALS, 2007, 16 (01) : 98 - 106
  • [38] Thermal conductivity and spectral phonon properties of freestanding and supported silicene
    Wang, Zuyuan
    Feng, Tianli
    Ruan, Xiulin
    JOURNAL OF APPLIED PHYSICS, 2015, 117 (08)
  • [39] Thermal Conductivity, Electrical Resistivity, and Microstructure of Cu/W Multilayered Nanofilms
    Dong, Lan
    Wei, Guo
    Cheng, Tao
    Tang, Jun
    Ye, Xiaobin
    Hong, Mengqing
    Hu, Lulu
    Yin, Ran
    Zhao, Shuqin
    Cai, Guangxu
    Shi, Yin
    Pan, Bicai
    Jiang, Changzhong
    Ren, Feng
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (07) : 8886 - 8896
  • [40] Phonon thermal conductivity of graphene
    Jacimovski, Stevo K.
    Bukurov, Masa
    Setrajcic, Jovan P.
    Rakovic, Dejan I.
    SUPERLATTICES AND MICROSTRUCTURES, 2015, 88 : 330 - 337