通过翘曲改善扶手椅石墨烯纳米带的传输性能:第一性原理研究

S. Sakina, Z. Johari, Zuriana Auzar, N. Alias, A. Hamzah, M. Yusoff
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引用次数: 0

摘要

半导体材料与迁移率和通/关电流比有关,以达到电子器件应用的高品质。本研究的目的是利用第一性原理计算和非平衡格林函数(NEGF)方法,证明通过翘曲对扶手椅石墨烯纳米带(AGNR)的变形影响,以改善其输运性能。仿真结果表明,当AGNR向上弯曲时,导通电流显著提高50%。此外,与电子性质相比,翘曲效应在输运性质中更为明显。这种AGNR的替代几何结构提供了一些方法,可以最大限度地减少通常与短通道效应相关的众所周知的缺点,因为设备尺寸缩小了,并扩大了实现其优势的可能性,特别是在高速设备应用中。
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Improving transport properties of armchair graphene nanoribbon by warping: A first principle study
Semiconductor material is concerned with mobility and on/off current ratio to achieve a high figure of merit for electronic device application. The aim of this study was to demonstrate deformation effect on armchair graphene nanoribbon (AGNR) by warping for improving its transport properties using first principle calculation coupled with the non-equilibrium green function (NEGF) method. Through simulation, significant improvement by 50% in on current are observed when the AGNR is warp upward. In addition, the warping effect is more noticeable in the transport properties compared to the electronic properties. This alternative geometry of AGNR provide ways to minimize the well-known drawbacks normally associated with the short channel effect as device dimension scaled down and expand the possibility of realizing their benefit particularly in high speed device application.
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