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Control of thermal conductivity with species mass in transition-metal dichalcogenides

机译:用过渡金属二卤化物中的物质质量控制热导率

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In this paper, we examine how the behaviour of the thermal conductivity of bulk and monolayer transition-metal dichalcogenides XY2 in their 2-H form can be controlled with different choices of cation and anion masses. We employ a semi-ab-initio approach, which combines first-principles phonon eigensolutions, the elastic anharmonic Hamiltonian for phonon-phonon interactions, a quasi-harmonic scheme for the temperature-dependent Gruneisen's constant, and a relaxation-time solution of the Boltzmann transport equation. Our results confirm an earlier finding [Gu and Yang, Appl. Phys. Lett. 105, 131903 (2014)] that the thermal conductivity of 2-H MoS2 is lower than that of 2-H WS2 contrary to what would be expected from the relative masses of Mo and W and the relative stiffnesses of both compounds. In addition to confirming this anomaly as a result of the larger acoustic optical gap of WS2 relative to that of MoS2, it is found that where one constituent species is fixed, more profound changes on the thermal conductivity occur for different anion masses than for different cation masses. We explain how these behaviours arise from the dispersion relations of each compound and the anharmonic interactions of phonon modes, and its connection with the relative masses of the constituent species. This finding provides useful insight into which 2-H dichalcogenides might be suitable for which thermal applications. Published by AIP Publishing.%135703.1-135703.7
机译:在本文中,我们研究了如何通过选择不同的阳离子和阴离子质量来控制2-H形式的体相和单层过渡金属二卤化物XY2的热导行为。我们采用半从头开始的方法,该方法结合了第一性原理的声子本征解,用于声子-声子相互作用的弹性非谐哈密顿量,针对与温度相关的Gruneisen常数的准调和方案以及玻尔兹曼的弛豫时间解运输方程。我们的结果证实了较早的发现[Gu and Yang,Appl。物理来吧105,131903(2014)],2-H MoS2的导热系数低于2-H WS2的导热系数,这与Mo和W的相对质量以及两种化合物的相对刚度所预期的相反。除了通过WS2相对于MoS2的较大声光学间隙来确认这种异常外,还发现在固定一种组成物质的情况下,不同阴离子质量比不同阳离子发生的热导率变化更深群众。我们解释了这些行为是如何由每种化合物的色散关系和声子模式的非谐相互作用以及它们与组成物种的相对质量的联系引起的。该发现提供了有用的见解,以了解哪些2-H二卤化二氢吡啶可能适合于哪些热应用。由AIP Publishing发布。%135703.1-135703.7

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  • 来源
    《Journal of Applied Physics 》 |2018年第13期| 214-220| 共7页
  • 作者单位

    Univ Exeter, Sch Phys, Stocker Rd, Exeter EX4 4QL, Devon, England;

    Univ Exeter, Sch Phys, Stocker Rd, Exeter EX4 4QL, Devon, England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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