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硅烯的传输特性及生物传感应用综述。

A review on transport characteristics and bio-sensing applications of silicene.

作者信息

Ghosal Supriya, Bandyopadhyay Arka, Chowdhury Suman, Jana Debnarayan

机构信息

Department of Physics, University of Calcutta, 92, A.P.C. Road, Kolkata 700009, India.

Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560012, India.

出版信息

Rep Prog Phys. 2023 Aug 14;86(9). doi: 10.1088/1361-6633/acec5a.

Abstract

Silicene, a silicon counterpart of graphene, has been predicted to possess Dirac fermions. The effective spin-orbit interaction in silicene is quite significant compared to graphene; as a result, buckled silicene exhibits a finite band gap of a few meV at the Dirac point. This band gap can be further tailored by applying in plane strain, an external electric field, chemical functionalization and defects. This special feature allows silicene and its various derivatives as potential candidates for device applications. In this topical review, we would like to explore the transport features of the pristine silicene and its possible nano derivatives. As a part of it, Thermoelectric properties as well as several routes for thermoelectric enhancement in silicene are investigated. Besides, the recent progress in biosensing applications of silicene and its hetero-structures will be highlighted. We hope the results obtained from recent experimental and theoretical studies in silicene will setup a benchmark in diverse applications such as in spintronics, bio-sensing and opto-electronic devices.

摘要

硅烯是石墨烯的硅对应物,据预测它具有狄拉克费米子。与石墨烯相比,硅烯中的有效自旋轨道相互作用相当显著;因此,褶皱硅烯在狄拉克点处表现出几毫电子伏特的有限带隙。通过施加面内应变、外部电场、化学功能化和缺陷,可以进一步调整这个带隙。这一特殊特性使硅烯及其各种衍生物成为器件应用的潜在候选材料。在这篇专题综述中,我们将探讨原始硅烯及其可能的纳米衍生物的输运特性。作为其中一部分,我们将研究硅烯的热电性质以及几种增强硅烯热电性能的途径。此外,还将重点介绍硅烯及其异质结构在生物传感应用方面的最新进展。我们希望从最近对硅烯的实验和理论研究中获得的结果能为自旋电子学、生物传感和光电器件等各种应用树立一个标杆。

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