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Thermal conductivities of phosphorene allotropes from first-principles calculations: a comparative study

机译:第一性原理计算phosphor同素异形体的热导率:比较研究

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摘要

Phosphorene has attracted tremendous interest recently due to its intriguing electronic properties. However, the thermal transport properties of phosphorene, especially for its allotropes, are still not well-understood. In this work, we calculate the thermal conductivities of five phosphorene allotropes (α-, β-, γ-, δ- and ζ-phase) by using phonon Boltzmann transport theory combined with first-principles calculations. It is found that the α-phosphorene exhibits considerable anisotropic thermal transport, while it is less obvious in the other four phosphorene allotropes. The highest thermal conductivity is found in the β-phosphorene, followed by the δ-, γ- and ζ-phase. The much lower thermal conductivity of the ζ-phase can be attributed to its relatively complex atomic configuration. It is expected that the rich thermal transport properties of phosphorene allotropes can have potential applications in the thermoelectrics and thermal management.
机译:磷由于其令人着迷的电子特性,最近引起了极大的兴趣。然而,磷的热传递性质,尤其是其同素异形体的热传递性质仍未被很好地理解。在这项工作中,我们通过使用声子玻尔兹曼输运理论与第一性原理计算相结合的方式,计算了五个phosphor同素异形体(α-,β-,γ-,δ-和ζ相)的热导率。发现α-磷烯表现出相当大的各向异性热传递,而在其他四种磷烯同素异形体中则不那么明显。在β-磷烯中发现了最高的热导率,其次是δ-,γ-和ζ-相。 ζ相的导热系数低得多,可归因于其相对复杂的原子构型。预期磷同素异形体的丰富的热传递性质可以在热电和热管理中具有潜在的应用。

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