A Theoretical Study on the Thermoelectric Properties of Porous Armchair Germanene Nanoribbons

Varunpreet Kaur, Deep Kamal Kaur Randhawa
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Abstract

Since the limits of conventional sources of energy are rapidly approaching, the thermoelectric devices have attracted attention for their potential of power generation directly from waste heat. In this paper, thermoelectric properties of porous armchair Germanene nanoribbons (AGeNRs) have been explored for a range of pore dimensions in order to achieve a high performance two-dimensional nanoscale thermoelectric device. The work has been done to investigate the influence of different nanopore shapes and their associated positions on the thermoelectric performance so as to tune it to the optimum pore shape and position that would enhance the overall thermoelectric efficiency. Also, the effect of passivation of the pore edges on thermoelectric parameters for all shapes has been studied. Further, the influence of temperature dependence on figure of merit has been observed. Ballistic transport regime and semi-empirical method using Huckel basis set is used to obtain the electrical properties while the Brenner potential is used for the phononic properties.
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多孔扶手椅型锗烯纳米带热电性能的理论研究
由于传统能源的极限正在迅速逼近,热电装置因其直接利用废热发电的潜力而引起了人们的注意。为了实现高性能的二维纳米热电器件,本文研究了多孔扶手型锗纳米带(AGeNRs)在一定孔径下的热电性能。研究了不同的纳米孔形状及其相关位置对热电性能的影响,从而将其调整到最佳的孔形状和位置,从而提高整体热电效率。此外,还研究了钝化孔边对各种形状的热电参数的影响。此外,还观察了温度依赖性对品质系数的影响。利用弹道输运区和Huckel基集的半经验方法获得电学性质,利用Brenner势获得声子性质。
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