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多层 InSe FET 中超过 10³ cm²/(V s)的本征电子迁移率。

Intrinsic Electron Mobility Exceeding 10³ cm²/(V s) in Multilayer InSe FETs.

机构信息

†Department of Physics, Case Western Reserve University, 2076 Adelbert Road, Cleveland, Ohio 44106, United States.

⊥Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 10617, Taiwan.

出版信息

Nano Lett. 2015 Jun 10;15(6):3815-9. doi: 10.1021/acs.nanolett.5b00493. Epub 2015 May 5.

Abstract

Graphene-like two-dimensional (2D) materials not only are interesting for their exotic electronic structure and fundamental electronic transport or optical properties but also hold promises for device miniaturization down to atomic thickness. As one material belonging to this category, InSe, a III-VI semiconductor, not only is a promising candidate for optoelectronic devices but also has potential for ultrathin field effect transistor (FET) with high mobility transport. In this work, various substrates such as PMMA, bare silicon oxide, passivated silicon oxide, and silicon nitride were used to fabricate multilayer InSe FET devices. Through back gating and Hall measurement in four-probe configuration, the device's field effect mobility and intrinsic Hall mobility were extracted at various temperatures to study the material's intrinsic transport behavior and the effect of dielectric substrate. The sample's field effect and Hall mobilities over the range of 20-300 K fall in the range of 0.1-2.0 × 10(3) cm(2)/(V s), which are comparable or better than the state of the art FETs made of widely studied 2D transition metal dichalcogenides.

摘要

类石墨烯二维(2D)材料不仅因其奇特的电子结构和基本的电子输运或光学性质而受到关注,而且有望将器件小型化到原子厚度。作为这一类材料之一的 InSe 是一种 III-VI 半导体,不仅是光电设备的有前途的候选者,而且具有用于具有高迁移率传输的超薄场效应晶体管(FET)的潜力。在这项工作中,使用了各种衬底,如 PMMA、裸氧化硅、钝化氧化硅和氮化硅,来制造多层 InSe FET 器件。通过背栅和四探针配置中的霍尔测量,在不同温度下提取了器件的场效应迁移率和本征霍尔迁移率,以研究材料的本征输运行为和介电衬底的影响。在 20-300 K 的范围内,样品的场效应和霍尔迁移率在 0.1-2.0×10(3)cm(2)/(V s)的范围内,这与广泛研究的二维过渡金属二卤化物制成的最先进的 FET 相当或更好。

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