The in-depth description of phonon transport mechanisms for XC (X = Si, Ge) under hydrostatic pressure: Considering pressure-induced phase transitions

被引:4
|
作者
Li, Wenhe [1 ]
Gao, Yufei [1 ]
Zhang, Xiaoliang [1 ]
Li, Lin [1 ]
Tang, Dawei [1 ]
机构
[1] Dalian Univ Technol, Sch Energy & Power Engn, Key Lab Ocean Energy Utilizat & Energy Conservat, Minist Educ, Dalian, Peoples R China
关键词
XC; Thermal conductivity; Phonon characteristic; Hydrostatic pressure; Phase transitions; LATTICE THERMAL-CONDUCTIVITY; AMORPHOUS-GERMANIUM CARBIDE; MOLECULAR-DYNAMICS; 1ST-PRINCIPLES; RESISTANCE; SCATTERING;
D O I
10.1016/j.ijheatmasstransfer.2022.122851
中图分类号
O414.1 [热力学];
学科分类号
摘要
A B S T R A C T In this paper, the effect of hydrostatic pressure on the thermal transport properties of silicon carbide (SiC) and germanium carbide (GeC) with zinc blende (ZB) and rock salt (RS) phases at room temperature is investigated by solving the phonon Boltzmann heat transport equation. Studies show that the thermal conductivities of the two materials increase with the raising pressure before the phase transition, however, the enhancement of GeC (40%) is much smaller than that of SiC (10 0%). Combined with phonon analysis, it is found that this phenomenon originates from the abnormal enhanced phonon scattering rate under high pressure, which partly offsets the increase of phonon group velocity and further suppresses the increase of thermal conductivity. Next, when the phase transition occurs, the thermal conductivities of SiC and GeC decrease sharply by 76% and 86%, respectively, which is mainly caused by the increase of the anharmonic characteristic related to phonon scattering. Finally, after the phase transition, the thermal conductivities of the two materials still show increasing trends with the raising pressure, however, the phonon group velocity of GeC does not change significantly and the variation of its thermal conductivity is mainly determined by the phonon lifetime, which is opposite to the case before phase transition, whose enhancement of thermal conductivity is mainly caused by the increase of phonon group velocity. The results indicate that GeC has a more complex phonon transport mechanism compared with SiC, i.e., its thermal conductivity before phase transition is determined by harmonic characteristic and that after phase transition shows a closer relationship with the anharmonic characteristic. This study provides data and mechanism support for the regulation of thermal conductivity from the perspective of pressure induced phase transition, and as well as supplies some guiding suggestions for engineering applications in the field of thermal transport regulation. (c) 2022 Elsevier Ltd. All rights reserved.
引用
下载
收藏
页数:8
相关论文
共 50 条
  • [41] Transport properties of CeCU2(Si0.9Ge0.1)2 under hydrostatic pressure
    Nakanishi, T
    Sparn, G
    Jeevan, HS
    Deppe, M
    Geibel, C
    Steglich, F
    PHYSICA B-CONDENSED MATTER, 2005, 359 : 157 - 159
  • [42] Pressure-induced metallic phase transition in gallium arsenide up to 24.3 GPa under hydrostatic conditions
    Zhang, Xinyu
    Dai, Lidong
    Hu, Haiying
    Hong, Meiling
    MODERN PHYSICS LETTERS B, 2021, 35 (28):
  • [43] Pressure-induced phase transformations in mineral chalcocite, Cu2S, under hydrostatic conditions
    Santamaria-Perez, D.
    Garbarino, G.
    Chulia-Jordan, R.
    Dobrowolski, M. A.
    Muehle, C.
    Jansen, M.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2014, 610 : 645 - 650
  • [44] Pressure-induced phase transformations in mineral chalcocite, Cu 2S, under hydrostatic conditions
    Santamaria-Perez, D. (dsantamaria@quim.ucm.es), 1600, Elsevier Ltd (610):
  • [45] A study of the phase transitions, electronic structures and thermodynamic properties of Mg2X (X = Ge, Si and Sn) under high pressure
    Guezlane, M.
    Baaziz, H.
    Charifi, Z.
    Belgacem-Bouzida, A.
    Djaballah, Y.
    JOURNAL OF SCIENCE-ADVANCED MATERIALS AND DEVICES, 2017, 2 (01): : 105 - 114
  • [46] Temperature and pressure-induced valence transitions in YbNi2Ge2 and YbPd2Si2
    Yamaoka, Hitoshi
    Jarrige, Ignace
    Tsujii, Naohito
    Lin, Jung-Fu
    Hiraoka, Nozomu
    Ishii, Hirofumi
    Tsuei, Ku-Ding
    PHYSICAL REVIEW B, 2010, 82 (03):
  • [47] Uniaxial versus hydrostatic pressure-induced phase transitions in CaFe2As2 and BaFe2As2
    Tomic, Milan
    Valenti, Roser
    Jeschke, Harald O.
    PHYSICAL REVIEW B, 2012, 85 (09)
  • [48] Infrared spectroscopy study of the nodal-line semimetal candidate ZrSiTe under pressure: Hints for pressure-induced phase transitions
    Ebad-Allah, J.
    Krottenmueller, M.
    Hu, J.
    Zhu, Y. L.
    Mao, Z. Q.
    Kuntscher, C. A.
    PHYSICAL REVIEW B, 2019, 99 (24)
  • [49] PHASE-TRANSITIONS UNDER PRESSURE AND EXCITON PHONON INTERACTIONS IN GASXSE1-X CRYSTALS
    ALLAKHVERDIEV, KR
    MAMEDOV, TG
    SHUKYUROV, MM
    SUBBOTIN, SI
    SOLID STATE COMMUNICATIONS, 1986, 59 (10) : 707 - 710
  • [50] First-principles investigations on electronic, elastic and optical properties of XC (X=Si, Ge, and Sn) under high pressure
    Hao, Aimin
    Yang, Xiaocui
    Wang, Xiaoming
    Zhu, Yan
    Liu, Xin
    Liu, Riping
    JOURNAL OF APPLIED PHYSICS, 2010, 108 (06)