论文标题
在缺陷的S形石墨烯纳米骨中调整热电的语音和电子贡献
Tuning Phononic and Electronic Contributions of Thermoelectric in defected S-Shape Graphene Nanoribbons
论文作者
论文摘要
热电学是一种使用废热的方式,在电子工业中至关重要,但是其在运营温度下的低性能使其在实际应用中不合适。裁缝石墨烯可以更改其特性。在这项工作中,我们有兴趣研究具有单个空缺(SV)和双空位(DV)模型的S形石墨烯结构的运输特性。这些结构由手性部分组成,该部分是扶手椅石墨烯纳米替伯恩和两个曲折的石墨烯丝带。我们通过Seebeck系数,电子电导,电子电导和语音电导的方式研究了功绩的变化,并以不同的设备尺寸的空缺。通过使用非平衡绿色功能方法研究系统的传输特性,以便从相关的汉密尔顿(动态矩阵)中从紧密结合(力常数)模型中获得。 DVS在所有长度上获得DV的最大功绩(ZT)。可以通过控制各种参数(例如位置和缺陷类型以及设备大小)来调整此系统的物理属性。我们的发现表明,延长结构可以减少语音贡献,而单个空缺比双重空缺可以更好地区分电子导电行为和电子电导。也就是说,空置工程可以显着提高热电性能。在大型设备中,SVS可以将ZT提高到2.5倍。
Thermoelectrics as a way to use waste heat, is essential in electronic industries, but its low performance at operational temperatures makes it inappropriate in practical applications. Tailoring graphene can change its properties. In this work, we are interested in studying the transport properties of S-shape graphene structures with the single vacancy (SV) and double vacancy (DV) models. The structures are composed of a chiral part, which is an armchair graphene nanoribbon, and two zigzag graphene ribbons. We investigate the changes in the figure of merit by means of the Seebeck coefficient, electronic conductance, and electronic and phononic conductances with the vacancies in different device sizes. The transport properties of the system are studied by using the non-equilibrium Greens function method, so that the related Hamiltonians (dynamical matrices) are obtained from the tight-binding (force constant) model. The maximum figure of merit (ZT) obtains for the DVs in all lengths. Physical properties of such a system can be tuned by controlling various parameters such as the location and the type of the defects, and the device size. Our findings show that lengthening the structure can reduce phononic contribution, and single vacancies than double vacancies can better distinguish between electronic thermal conductance behavior and electronic conductance one. Namely, vacancy engineering can significantly increase thermoelectric performance. In the large devices, the SVs can increase the ZT up to 2.5 times.