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Influence of the electron and phonon temperature and of the electric-charge density on the optimal efficiency of thermoelectric nanowires

机译:电子和声子温度以及电荷密度对热电纳米线最佳效率的影响

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In this paper we study the thermodynamic efficiency of thermoelectric generators in which the heat transport is driven by phonons and electrons. It is assumed that the phonon temperature and the electron temperature are different, and that the electric-charge density is nonuniform. The mean temperature is defined by observing that the internal energy of the system is the same either in the presence of two temperatures, or of one temperature. In steady states, we determine the influence of the gradients of the mean temperature and of the electric-charge density on the theoretical values of the thermoelectric efficiency. The physical conditions under which such efficiency is optimal are determined as well. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中,我们研究了热电发电机的热力学效率,其中热传输由声子和电子驱动。假定声子温度和电子温度不同,并且电荷密度不均匀。通过观察系统的内部能量在两个温度或一个温度存在下是相同的来定义平均温度。在稳态下,我们确定平均温度和电荷密度梯度对热电效率理论值的影响。还确定了这样的效率最佳的物理条件。 (C)2015 Elsevier Ltd.保留所有权利。

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