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2D Material Optoelectronics for Information Functional Device Applications: Status and Challenges

机译:信息功能设备应用的2D材料光电技术:现状与挑战

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摘要

Graphene and the following derivative 2D materials have been demonstrated to exhibit rich distinct optoelectronic properties, such as broadband optical response, strong and tunable light–mater interactions, and fast relaxations in the flexible nanoscale. Combining with optical platforms like fibers, waveguides, grating, and resonators, these materials has spurred a variety of active and passive applications recently. Herein, the optical and electrical properties of graphene, transition metal dichalcogenides, black phosphorus, MXene, and their derivative van der Waals heterostructures are comprehensively reviewed, followed by the design and fabrication of these 2D material‐based optical structures in implementation. Next, distinct devices, ranging from lasers to light emitters, frequency convertors, modulators, detectors, plasmonic generators, and sensors, are introduced. Finally, the state‐of‐art investigation progress of 2D material‐based optoelectronics offers a promising way to realize new conceptual and high‐performance applications for information science and nanotechnology. The outlook on the development trends and important research directions are also put forward.
机译:石墨烯和随后的2D衍生材料已被证明具有丰富的独特光电特性,例如宽带光学响应,强大且可调的光-质相互作用以及柔性纳米级的快速弛豫。这些材料与光纤,波导,光栅和谐振器之类的光学平台相结合,最近刺激了各种有源和无源应用。本文对石墨烯,过渡金属二卤化物,黑磷,MXene及其衍生的范德华异质结构的光学和电学性能进行了全面综述,然后设计和制造了这些基于2D材料的光学结构。接下来,介绍了各种不同的设备,从激光器到发光器,变频器,调制器,检测器,等离子体发生器和传感器。最后,基于二维材料的光电子学的最新研究进展为实现信息科学和纳米技术的新概念和高性能应用提供了一种有前途的方法。还提出了发展趋势的展望和重要的研究方向。

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