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A Review on Graphene-Based Light Emitting Functional Devices

机译:基于石墨烯的发光功能装置综述

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摘要

In recent years, the field of nanophotonics has progressively developed. However, constant demand for the development of new light source still exists at the nanometric scale. Light emissions from graphene-based active materials can provide a leading platform for the development of two dimensional (2-D), flexible, thin, and robust light-emitting sources. The exceptional structure of Dirac’s electrons in graphene, massless fermions, and the linear dispersion relationship with ultra-wideband plasmon and tunable surface polarities allows numerous applications in optoelectronics and plasmonics. In this article, we present a comprehensive review of recent developments in graphene-based light-emitting devices. Light emissions from graphene-based devices have been evaluated with different aspects, such as thermal emission, electroluminescence, and plasmons assisted emission. Theoretical investigations, along with experimental demonstration in the development of graphene-based light-emitting devices, have also been reviewed and discussed. Moreover, the graphene-based light-emitting devices are also addressed from the perspective of future applications, such as optical modulators, optical interconnects, and optical sensing. Finally, this review provides a comprehensive discussion on current technological issues and challenges related to the potential applications of emerging graphene-based light-emitting devices.
机译:近年来,纳米光源学领域已逐步发展。然而,对新光源发展的不断需求仍然存在于纳米级。基于石墨烯的活性材料的光排放可以提供用于开发二维(2-D),柔性,薄和强大的发光源的领先平台。与超宽带等离子体和可调谐表面极性的狄拉克,无麻环和线性分散关系中的狄拉克电子的特殊结构允许众多应用在光电子和血管上。在本文中,我们对基于石墨烯的发光装置进行了全面的综述。基于石墨烯的装置的光排放已经用不同的方面进行了评估,例如热排放,电致发光和等离子体辅助发射。理论研究以及基于石墨烯的发光装置的发展的实验示范,还得到了审查和讨论。此外,基于石墨烯的发光装置也被从未来应用的角度寻址,例如光学调制器,光学互连和光学感测。最后,本综述提供了关于当前技术问题和挑战与新兴石墨烯的发光装置有关的挑战。

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