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Violation of the T−1 Relationship in the Lattice Thermal Conductivity of Mg3Sb2 with Locally Asymmetric Vibrations

机译:用局部不对称振动侵犯晶格导热率的晶格导热系数的T-1关系

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摘要

Most crystalline materials follow the guidelines of T−1 temperature-dependent lattice thermal conductivity (κL) at elevated temperatures. Here, we observe a weak temperature dependence of κL in Mg3Sb2, T−0.48 from theory and T−0.57 from measurements, based on a comprehensive study combining ab initio molecular dynamics calculations and experimental measurements on single crystal Mg3Sb2. These results can be understood in terms of the so-called “phonon renormalization” effects due to the strong temperature dependence of the interatomic force constants (IFCs). The increasing temperature leads to the frequency upshifting for those low-frequency phonons dominating heat transport, and more importantly, the phonon-phonon interactions are weakened. In-depth analysis reveals that the phenomenon is closely related to the temperature-induced asymmetric movements of Mg atoms within MgSb4 tetrahedron. With increasing temperature, these Mg atoms tend to locate at the areas with relatively low force in the force profile, leading to reduced effective 3rd-order IFCs. The locally asymmetrical atomic movements at elevated temperatures can be further treated as an indicator of temperature-induced variations of IFCs and thus relatively strong phonon renormalization. The present work sheds light on the fundamental origins of anomalous temperature dependence of κL in thermoelectrics.
机译:大多数结晶材料在高温下遵循T-1温度依赖性晶格导热率(κL)的指导。在这里,基于在单晶MG3SB2上结合的综合研究,观察MG3SB2,T-0.48在MG3SB2,T-0.48中易受测量和T-0.57的弱温依赖性。这些结果可以根据所谓的“声子重整化”效应来理解,由于内部力常数(IFCs)的强烈依赖性强烈依赖性,因此可以理解。越来越大的温度导致那些低频声子主导热传输的频率振幅,更重要的是,辐射势势相互作用被削弱。深入分析表明,该现象与MgSB4四面体内Mg原子的温度诱导的不对称运动密切相关。随着温度的增加,这些Mg原子倾向于在力曲线中具有相对低力的区域定位,导致有效的3rd阶IFC。升高温度下的局部不对称原子运动可以进一步被视为IFCS温度诱导变化的指标,从而相对强的声子重整化。目前的工作揭示了热电学中κL异常温度依赖性的基本起源。

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