论文标题

增强的磷纳米热电特性

Enhanced thermoelectric properties in phosphorene nanorings

论文作者

Borojeni, Fatemeh Moghadasi, Sisakht, Esmaeil Taghizadeh, Fazileh, Farhad, Peeters, F. M.

论文摘要

使用紧密结合方法,我们研究了矩形磷酸纳米纳米的热电(TE)特性,用于对称和不对称地附着在磷烯纳米替比铅铅上。我们设计基于磷的纳米结构,以在不存在和存在垂直磁场的情况下增强TE性能。我们的结果表明,当曲折的磷烯纳米骨本(ZPNR)对称与矩形环相耦合时,由于抑制边缘状态的贡献,在电子电导率中诱导了相对较大的带隙。与原始ZPNR相比,这会导致热电响应显着增加。更有趣的是,我们发现,尽管该系统中的最大功率因数与其ZPNR对应物的功率因数大致相同,但该基于磷烯的纳米结构的电子热电导率要小得多,可以显着促进绩效数字的改善。同样,我们发现我们设计的纳米结构的对称性/不对称性,环的几何特性和磁通量是控制磷酸量子环的热电特性的三个重要因素。我们的数值计算表明,通过更改磁通量,通过纳米元素改变了抗抗抗药性点附近热电图的急剧增加。我们证明了热电器的可调性以及用磁通量打开和关闭磷烯纳米的TE响应的可能性。此外,对于具有扶手椅边缘导线的不对称连接配置,我们发现,尽管热电器几乎完好无损,但电子热电导的显着降低会导致功绩图的显着改善。我们的结果表明,磷光纳米是用于TE应用的有希望的候选纳米结构。

Using the tight-binding approach, we investigate the thermoelectric (TE) properties of rectangular phosphorene nanorings for both symmetrically and asymmetrically attaching to phosphorene nanoribbon leads. We design our phosphorene-based nanostructures to enhance the TE performance in the absence and the presence of perpendicular magnetic fields. Our results show that when zigzag phosphorene nanoribbons (ZPNRs) are coupled symmetrically to rectangular rings, a comparatively large band gap is induced in the electronic conductance due to the suppression of the contribution of edge states. This gives rise to a remarkable increase in the thermopower response compared to the case of pristine ZPNRs. More intriguingly, we found that though the maximum power factor in this system is about the same as the one for its ZPNR counterpart, the much smaller electronic thermal conductance of this phosphorene-based nanostructure can remarkably contribute to the improvement of the figure of merit. Also, we found that the symmetry/asymmetry of our designed nanostructures, the geometrical characteristics of the ring, and the magnetic flux are three important factors that control the thermoelectric properties of phosphorene quantum rings. Our numerical calculations show that by changing the magnetic flux through the nanoring, a drastic increase in the thermopower is observed near an antiresonance point. We demonstrate the tunability of the thermopower and the possibility to switch on and off the TE response of phosphorene nanorings with the magnetic flux. Moreover, for asymmetric connection configurations with armchair-edged leads, we found that though the thermopower is almost intact, a remarkable reduction of the electronic thermal conductance can lead to a notable improvement in the figure of merit. Our results suggest phosphorene nanorings as promising candidate nanostructures for TE applications.

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