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Cross-plane thermal properties of transition metal dichalcogenides

机译:过渡金属二卤化物的跨平面热学性质

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In this work, we explore the thermal properties of hexagonal transition metal dichalcogenide compounds with different average atomic masses but equivalent microstructures. Thermal conductivity values of sputtered thin films were compared to bulk crystals. The comparison revealed a >10 fold reduction in thin film thermal conductivity. Structural analysis of the films revealed a turbostratic structure with domain sizes on the order of 5–10?nm. Estimates of phonon scattering lengths at domain boundaries based on computationally derived group velocities were consistent with the observed film microstructure, and accounted for the reduction in thermal conductivity compared to values for bulk crystals.
机译:在这项工作中,我们探索了具有不同平均原子质量但等效的微观结构的六角形过渡金属二卤化二硫化合物的热性能。将溅射的薄膜的热导率值与块状晶体进行比较。比较显示薄膜热导率降低> 10倍。薄膜的结构分析表明,其涡轮层结构的畴尺寸约为5–10?nm。基于计算得出的基团速度,在畴边界处声子散射长度的估计值与观察到的薄膜微结构一致,并说明了与大晶体的值相比,导热系数的降低。

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