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CALCULATION AND VARIATION OF THERMOELECTRIC PROPERTIES OF PHASE TRANSITION MATERIALS

机译:相变材料热电性能的计算与变化

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摘要

Thermoelectric materials are defined as materials which can convert heat into electrical energy. Thermoelectric materials are often used for applications such as power generation or refrigeration. Because of the applications for thermoelectric materials, it is important to understand the electrical-to-thermal coupling behavior of such materials. The thermoelectric materials simulated are 2D film configurations of Tin Selenide (SnSe). Using the derivations for non-equilibrium electron-phonon dynamics as well as obtaining the phonon dispersions, second-order and third-order elastic constants, the thermoelectric properties can be calculated. For the purposes of this paper, the correlation of thermoelectric properties such as thermopwer, thermal conductivity, and thermoelectric figure of merit with parameters such as the characteristic length of the 2D material as well as the applied voltages of 0 V/m, 10,000 V/m, and 20,000 V/m over the 2D material. Furthermore, an analysis on the effect of strain on the thermoelectric properties of SnSe is conducted.
机译:热电材料被定义为可以将热量转换为电能的材料。热电材料通常用于诸如发电或制冷等应用。由于热电材料的应用,重要的是要理解这些材料的电 - 热耦合行为。模拟的热电材料是锡硒化锡(SNSE)的2D膜构型。使用非平衡电子 - 声子动力学的衍生以及获得声子分散体,二阶和三阶弹性常数,可以计算热电性能。出于本文的目的,热电性质如热电厂,导热系数和热电人物的相关性的相关性与诸如2D材料的特征长度的参数以及0V / m的施加电压,10,000V / M,2D材料上的20,000V / m。此外,对SNSE热电性能的应变作用分析。

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