Experimental study on the in-plane thermal conductivity of Au nanofilms

被引:0
|
作者
TAKAHASHI Koji
IKUTA Tatsuya
FUJII Motoo
机构
[1] Fukuoka 812-8581
[2] Graduate School of Engineering Kyushu University
[3] Institute for Materials Chemistry and Engineering
[4] Japan
[5] Kasuga 816-8580
基金
中国国家自然科学基金;
关键词
nanofilm; in-plane thermal conductivity; size effect; Wiedemann-Franz law;
D O I
暂无
中图分类号
O484.4 [薄膜的性质];
学科分类号
摘要
The in-plane thermal conductivity of Au nanofilms with thickness of 23 nm, which are fabricated by the electron beam-physical vapor deposition method and a suspension technology, is experimentally measured at 80-300 K by a one-dimensional steady-state electrical heating method. Strong size effects are found on the measured nanofilm thermal conductivity. The Au nanofilm in-plane thermal conductivity is much less than that of the bulk material. With the increasing temperature, the nanofilm thermal conductivity increases. This is opposite to the temperature dependence of the bulk property. The Lorenz number of the Au nanofilms is about three times larger than the bulk value and decreases with the increasing temperature, which indicates the invalidity of the Wiedemann-Franz law for metallic nanofilms.
引用
收藏
页码:212 / 216
页数:5
相关论文
共 50 条
  • [31] IN-PLANE THERMAL CONDUCTIVITY OF PEM FUEL CELL GAS DIFFUSION LAYERS
    Sadeghi, Ehsan
    Djilali, Ned
    Bahrami, Majid
    PROCEEDINGS OF THE ASME/JSME 8TH THERMAL ENGINEERING JOINT CONFERENCE 2011, VOL 3, 2011, : 235 - +
  • [32] Abnormal in-plane thermal conductivity anisotropy in bilayer a-phase tellurene
    Cheng, Yanhua
    Yang, Xiaolong
    Han, Zherui
    Wu, Wenzhuo
    Luo, Xiaobing
    Ruan, Xiulin
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2022, 192
  • [33] Extreme in-plane thermal conductivity anisotropy in Rhenium-based dichalcogenides
    Tahbaz, Sina
    Pisana, Simone
    JOURNAL OF PHYSICS-MATERIALS, 2024, 7 (01):
  • [34] In-plane effective thermal conductivity of plain-weave screen laminates
    Xu, J
    Wirtz, RA
    THERMAL CHALLENGES IN NEXT GENERATION ELECTRONIC SYSTEMS, 2002, : 231 - 239
  • [35] Molecular dynamics calculation of the In-plane thermal conductivity of GaAs/AlAs superlattices
    Daly, BC
    Maris, HJ
    Tanaka, Y
    Tamura, S
    PHYSICAL REVIEW B, 2003, 67 (03):
  • [36] On the in-plane electronic thermal conductivity of biased nanosheet β12-borophene
    Hong T T Nguyen
    Bui D Hoi
    Tuan V Vu
    Phan V Nham
    Nguyen T T Binh
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2020, 22 (11) : 6318 - 6325
  • [37] Temperature and Thickness Dependences of the Anisotropic In-Plane Thermal Conductivity of Black Phosphorus
    Smith, Brandon
    Vermeersch, Bjorn
    Carrete, Jesus
    Ou, Eric
    Kim, Jaehyun
    Mingo, Natalio
    Akinwande, Deji
    Shi, Li
    ADVANCED MATERIALS, 2017, 29 (05)
  • [38] In-plane effective thermal conductivity of plain-weave screen laminates
    Xu, J
    Wirtz, RA
    IEEE TRANSACTIONS ON COMPONENTS AND PACKAGING TECHNOLOGIES, 2002, 25 (04): : 615 - 620
  • [39] Plasmon Thermal Conductance and Thermal Conductivity of Metallic Nanofilms
    Ordonez-Miranda, Jose
    Kosevich, Yuriy A.
    Lee, Bong Jae
    Nomura, Masahiro
    Volz, Sebastian
    PHYSICAL REVIEW APPLIED, 2023, 19 (04)
  • [40] In-plane and out-of-plane thermal conductivity of silicon thin films predicted by molecular dynamics
    Gomes, Carlos J.
    Madrid, Marcela
    Goicochea, Javier V.
    Amon, Cristina H.
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2006, 128 (11): : 1114 - 1121