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High Thermoelectric Performance in Two-Dimensional Tellurium: An Ab Initio Study

机译:二维碲化的高热电性能:AB Initio研究

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摘要

In 2016, bulk tellurium was experimentally observed as a remarkable thermoelectric material. Recently, two-dimensional (2D) tellurium, called tellurene, has been synthesized and has exhibited unexpected electronic properties compared with the 2D MoS2. They have also been fabricated into air-stable and highly efficient field-effect transistors. There are two stable 2D tellurene phases. One (beta-Te) has been confirmed with an ultralow lattice thermal conductivity (kappa(L)). However, the study of the transport properties of the other more stable phase, alpha-Te, is still lacking. Here, we report the thermoelectric performance and phonon properties of alpha-Te using Boltzmann transport theory and first-principles calculations. A maximum ZT value of 0.83 is achieved under a reasonable hole concentration, suggesting that the monolayer alpha-Te is a potential competitor in the thermoelectric field.
机译:在2016年,实验观察到散装碲作为一种显着的热电材料。 最近,已经合成了二维(2D)碲,称为碲,与2D MOS2相比表现出意外的电子性能。 它们也被制成到空气稳定和高效的场效应晶体管中。 有两个稳定的2D碲阶段。 已经用超级晶格导热率确认了一种(β-TE)(Kappa(L))。 然而,仍然缺乏对另一个更稳定的相位阶段的运输性质的研究。 在这里,我们通过Boltzmann运输理论和第一原理计算报告了Alpha-TE的热电性能和声子属性。 在合理的孔浓度下实现最大ZT值0.83,表明单层α-TE是热电场中的潜在竞争对手。

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