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应用于范德华肖特基二极管的背对背二极管模型。

A back-to-back diode model applied to van der Waals Schottky diodes.

作者信息

Cloninger Jeffrey A, Harris Raine, Haley Kristine L, Sterbentz Randy M, Taniguchi Takashi, Watanabe Kenji, Island Joshua O

机构信息

Department of Physics and Astronomy, University of Nevada Las Vegas, Las Vegas, NV 89154, United States of America.

Research Center for Materials Nanoarchitectonics, National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan.

出版信息

J Phys Condens Matter. 2024 Aug 9;36(45). doi: 10.1088/1361-648X/ad69ef.

Abstract

The use of metal and semimetal van der Waals contacts for 2D semiconducting devices has led to remarkable device optimizations. In comparison with conventional thin-film metal deposition, a reduction in Fermi level pinning at the contact interface for van der Waals contacts results in, generally, lower contact resistances and higher mobilities. Van der Waals contacts also lead to Schottky barriers that follow the Schottky-Mott rule, allowing barrier estimates on material properties alone. In this study, we present a double Schottky barrier model and apply it to a barrier tunable all van der Waals transistor. In a molybdenum disulfide (MoS) transistor with graphene and few-layer graphene contacts, we find that the model can be applied to extract Schottky barrier heights that agree with the Schottky-Mott rule from simple two-terminal current-voltage measurements at room temperature. Furthermore, we show tunability of the Schottky barrierusing a regional contact gate. Our results highlight the utility of a basic back-to-back diode model in extracting device characteristics in all van der Waals transistors.

摘要

将金属和半金属范德华接触用于二维半导体器件已带来了显著的器件优化。与传统的薄膜金属沉积相比,范德华接触在接触界面处的费米能级钉扎减少,通常会导致更低的接触电阻和更高的迁移率。范德华接触还会导致遵循肖特基 - 莫特规则的肖特基势垒,仅根据材料特性就能估算势垒。在本研究中,我们提出了一种双肖特基势垒模型,并将其应用于一个势垒可调的全范德华晶体管。在具有石墨烯和少层石墨烯接触的二硫化钼(MoS)晶体管中,我们发现该模型可用于从室温下简单的两端电流 - 电压测量中提取符合肖特基 - 莫特规则的肖特基势垒高度。此外,我们展示了使用区域接触栅对肖特基势垒的可调性。我们的结果突出了基本的背靠背二极管模型在提取全范德华晶体管器件特性方面的实用性。

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