具有纳米断裂的石墨烯纳米带作为高效热电器件

Md Sharafat Hossain, Feras Al-Dirini, Liming Jiang, F. Hossain, E. Skafidas
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引用次数: 0

摘要

电子的δ型输运分布具有最佳的热电性能。另一方面,通过实验验证了在通道区域具有纳米断裂的石墨烯纳米带具有隧道效应。在这里,我们利用在石墨烯断裂结中观察到的隧道现象来实现三角洲式输运分布。事实上,我们的设备显示的ZT记录范围从10到100。这种高ZT可归因于由于断裂而完全阻塞声子输运。电导率也很低,然而,在隧道能量附近,电导率变得显著,从而增加了ZT值。在本报告中,我们研究了边缘取向和条带宽度对热电性能的影响。此外,我们还研究了温度对隧道的影响及其对热电性能的影响。我们发现存在一个器件性能最佳的最佳温度。在模拟中,我们假设了弹道输运,并使用第一性原理方法获得了电学性质。声子系统用Tersoff经验势模型表征。所提出的器件结构具有潜在的应用潜力,可以作为二维纳米级局部冷却器,也可以作为阵列连接的热电发电机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Graphene nano-ribbon with nano-breaks as efficient thermoelectric device
It has been well established that delta-like transport distribution of electron gives the best thermoelectric performance. On another front, it has been experimentally verified that graphene nano-ribbon with nano-break in the channel region exhibits tunnelling. Here, we utilize the tunnelling phenomena observed in graphene break junctions to achieve delta like transport distribution. Indeed our device exhibit record ZT ranging from 10 to 100. This high ZT can be attributed to complete blockage of phonon transport due to the break. The electrical conductance also goes very low, however, near the tunnelling energy it becomes significant, giving rise to an enhanced ZT value. In this report we investigate the effect edge orientation and the width of the ribbon on thermoelectric property. Moreover, we investigate the effect of temperature on tunnelling and how it affect thermoelectric performance. We find that there is an optimal temperature at which the device performs best. In the simulations, we assumed ballistic transport and used first principle approach to obtain the electrical properties. The phononic system was characterized by a Tersoff empirical potential model. The proposed device structure has potential applications as a two-dimensional nanoscale local cooler and as a thermoelectric power generator when connected in arrays.
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