Two-dimensional layered material photodetectors: what could be the upcoming downstream applications beyond prototype devices?

光电探测器 紫外线 下游(制造业) 跟踪(教育) 信号(编程语言) 计算机科学 光电子学 材料科学 工程类 心理学 教育学 运营管理 程序设计语言
作者
Yuhang Ma,Huanrong Liang,Xinyi Guan,Shuhua Xu,Meiling Tao,Xinyue Liu,Zhaoqiang Zheng,Jiandong Yao,Guowei Yang
出处
期刊:Nanoscale horizons [Royal Society of Chemistry]
卷期号:9 (10): 1599-1629 被引量:15
标识
DOI:10.1039/d4nh00170b
摘要

With distinctive advantages spanning excellent flexibility, rich physical properties, strong electrostatic tunability, dangling-bond-free surface, and ease of integration, 2D layered materials (2DLMs) have demonstrated tremendous potential for photodetection. However, to date, most of the research enthusiasm has been merely focused on developing novel prototype devices. In the past few years, researchers have also been devoted to developing various downstream applications based on 2DLM photodetectors to contribute to promoting them from fundamental research to practical commercialization, and extensive accomplishments have been realized. In spite of the remarkable advancements, these fascinating research findings are relatively scattered. To date, there is still a lack of a systematic and profound summarization regarding this fast-evolving domain. This is not beneficial to researchers, especially researchers just entering this research field, who want to have a quick, timely, and comprehensive inspection of this fascinating domain. To address this issue, in this review, the emerging downstream applications of 2DLM photodetectors in extensive fields, including imaging, health monitoring, target tracking, optoelectronic logic operation, ultraviolet monitoring, optical communications, automatic driving, and acoustic signal detection, have been systematically summarized, with the focus on the underlying working mechanisms. At the end, the ongoing challenges of this rapidly progressing domain are identified, and the potential schemes to address them are envisioned, which aim at navigating the future exploration as well as fully exerting the pivotal roles of 2DLMs towards the practical optoelectronic industry.
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