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Tunable Optical Properties of 2D Materials and Their Applications
Advanced Optical Materials ( IF 8.0 ) Pub Date : 2020-11-18 , DOI: 10.1002/adom.202001313
Qijie Ma 1 , Guanghui Ren 1, 2 , Kai Xu 1 , Jian Zhen Ou 1
Affiliation  

Recent efforts have been heavily devoted to the development of next‐generation optoelectronic devices based on 2D materials, due to their unique optical properties that are distinctly different from those of bulk counterparts. Given that the feature of flexible tunability is highly desired, various approaches have been demonstrated to efficiently modulate the optical properties, eventually enabling peculiar functionalities or realizing high‐performance nanoscale devices. Here, this review focuses on recent advances in tuning the optical properties of 2D materials by external stimuli including electric field, mechanical strain, magnetic field, acoustic wave, and thermal heating. Also, such tunability leads to many emerging applications in the fields of electronics, optics, sensors, and energy harvesting, which are summarized and critically discussed in the paper.

中文翻译:

二维材料的可调光学特性及其应用

由于基于2D材料的下一代光电器件的独特光学特性与大量同类器件的明显不同,最近的努力已投入大量精力。鉴于高度希望具有灵活的可调性,已证明了各种方法可以有效地调制光学特性,最终实现独特的功能或实现高性能的纳米级器件。在此,本文将重点介绍通过外部刺激(包括电场,机械应变,磁场,声波和热加热)调整2D材料的光学特性的最新进展。同样,这种可调性导致在电子,光学,传感器和能量收集领域的许多新兴应用,
更新日期:2021-01-18
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