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从紫外-可见光到红外的局域场增强二维材料光电探测器的最新进展

Recent Progress on Localized Field Enhanced Two-dimensional Material Photodetectors from Ultraviolet-Visible to Infrared.

作者信息

Wang Jianlu, Fang Hehai, Wang Xudong, Chen Xiaoshuang, Lu Wei, Hu Weida

机构信息

National Laboratory for Infrared Physics, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, 500 Yutian Road, Shanghai, 200083, China.

University of Chinese Academy of Sciences, 19 Yuquan Road, Beijing, 100049, China.

出版信息

Small. 2017 Sep;13(35). doi: 10.1002/smll.201700894. Epub 2017 Jun 8.

Abstract

Two-dimensional (2D) materials have drawn tremendous attention in recent years. Being atomically thin, stacked with van der Waals force and free of surface chemical dangling bonds, 2D materials exhibit several distinct physical properties. To date, 2D materials include graphene, transition metal dichalcogenides (TMDS), black phosphorus, black P As , boron nitride (BN) and so forth. Owing to their various bandgaps, 2D materials have been utilized for photonics and optoelectronics. Photodetectors based on 2D materials with different structures and detection mechanisms have been established and present excellent performance. In this Review, localized field enhanced 2D material photodetectors (2DPDs) are introduced with sensitivity over the spectrum from ultraviolet, visible to infrared in the sight of the influence of device structure on photodetector performance instead of directly illustrating the detection mechanisms. Six types of localized fields are summarized. They are: ferroelectric field, photogating electric field, floating gate induced electrostatic field, interlayer built-in field, localized optical field, and photo-induced temperature gradient field, respectively. These localized fields are proved to effectively promote the detection ability of 2DPDs by suppressing background noise, enhancing optical absorption, improving electron-hole separation efficiency, amplifying photoelectric gain and/or extending the detection range.

摘要

近年来,二维(2D)材料备受关注。二维材料原子级薄,通过范德华力堆叠且无表面化学悬空键,展现出多种独特的物理性质。迄今为止,二维材料包括石墨烯、过渡金属二硫属化物(TMDS)、黑磷、黑砷化磷、氮化硼(BN)等。由于其具有不同的带隙,二维材料已被用于光子学和光电子学领域。基于不同结构和探测机制的二维材料光电探测器已被研制出来,并表现出优异的性能。在本综述中,从器件结构对光电探测器性能的影响角度,而非直接阐述探测机制,介绍了局域场增强二维材料光电探测器(2DPD),其在从紫外、可见光到红外的光谱范围内具有灵敏度。总结了六种类型的局域场。它们分别是:铁电场、光控电场、浮栅感应静电场、层间内建场、局域光场和光致温度梯度场。这些局域场被证明可通过抑制背景噪声、增强光吸收、提高电子 - 空穴分离效率、放大光电增益和/或扩展探测范围,有效提升二维材料光电探测器的探测能力。

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