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超越范德华结的下一代光电探测器。

Next-Generation Photodetectors beyond Van Der Waals Junctions.

作者信息

Wang Fang, Zhang Tao, Xie Runzhang, Liu Anna, Dai Fuxing, Chen Yue, Xu Tengfei, Wang Hailu, Wang Zhen, Liao Lei, Wang Jianlu, Zhou Peng, Hu Weida

机构信息

State Key Laboratory of Infrared Physics, Chinese Academy of Sciences, Shanghai, 200083, China.

School of Electronic, Electrical and Communication Engineering, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Adv Mater. 2024 Jan;36(3):e2301197. doi: 10.1002/adma.202301197. Epub 2023 Nov 15.

Abstract

With the continuous advancement of nanofabrication techniques, development of novel materials, and discovery of useful manipulation mechanisms in high-performance applications, especially photodetectors, the morphology of junction devices and the way junction devices are used are fundamentally revolutionized. Simultaneously, new types of photodetectors that do not rely on any junction, providing a high signal-to-noise ratio and multidimensional modulation, have also emerged. This review outlines a unique category of material systems supporting novel junction devices for high-performance detection, namely, the van der Waals materials, and systematically discusses new trends in the development of various types of devices beyond junctions. This field is far from mature and there are numerous methods to measure and evaluate photodetectors. Therefore, it is also aimed to provide a solution from the perspective of applications in this review. Finally, based on the insight into the unique properties of the material systems and the underlying microscopic mechanisms, emerging trends in junction devices are discussed, a new morphology of photodetectors is proposed, and some potential innovative directions in the subject area are suggested.

摘要

随着纳米制造技术的不断进步、新型材料的开发以及在高性能应用(尤其是光电探测器)中有用操纵机制的发现,结器件的形态以及结器件的使用方式发生了根本性的变革。同时,还出现了不依赖任何结、具有高信噪比和多维调制功能的新型光电探测器。本综述概述了一类独特的材料体系,即范德华材料,它支持用于高性能检测的新型结器件,并系统地讨论了结以外各类器件发展的新趋势。该领域远未成熟,且有众多测量和评估光电探测器的方法。因此,本综述还旨在从应用的角度提供一种解决方案。最后,基于对材料体系独特性质和潜在微观机制的洞察,讨论了结器件的新兴趋势,提出了光电探测器的新形态,并给出了该学科领域一些潜在的创新方向。

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