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Thermoelectric power generation efficiency of zigzag monolayer nanoribbon of bismuth

机译:铋Zigzag单层纳米铋的热电发电效率

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摘要

The thermoelectric power generation efficiency of a bismuth monolayer nanoribbon has been studied theoretically. We calculate the conductance of such a structure using the multi-orbital tight-binding model and also recursive Green's function method, in the presence of a substrate and on-site potential. For the case of the SiC substrate-supported bismuth nanoribbon and by proper selection of on-site potential, a boxcar shape conductance in terms of energy has been obtained. Using the Landauer-Billtiker formalism in the non-linear response regime, we calculate heat and charge currents at low temperatures. By calculation of the electrical output power and power conversion thermoelectric efficiency, we have illustrated that such a structure can operate at high thermoelectric efficiency and also a considerable power generation rate.
机译:从理论上已经研究了铋单层纳米杆间的热电发电效率。 我们在存在基板和现场电位的情况下,使用多轨道紧密结合模型和递归绿色的功能方法计算这种结构的电导。 For the case of the SiC substrate-supported bismuth nanoribbon and by proper selection of on-site potential, a boxcar shape conductance in terms of energy has been obtained. 在非线性响应制度中使用Landauer-Billtiker形式主义,我们在低温下计算热量和电荷。 通过计算电输出功率和功率转换热电效率,我们示出了这种结构可以以高热电效率操作并且也具有相当大的发电速率。

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