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Perspectives of 2D Materials for Optoelectronic Integration

机译:二维材料在光电集成中的应用前景

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摘要

2D materials show wide-ranging physical properties with their electronic bandgaps varying from zero to several electronvolts, offering a rich platform to explore novel electronic and optoelectronic functions. Notably, atomically thin 2D materials are well suited for integration in optoelectronic circuits, because of their ultrathin body, strong light-matter interactions, and compatibility with the current silicon photonic technology. In this paper, an overview of the state of the art of using 2D materials in optoelectronic devices and integration is provided. The optoelectronic properties of 2D materials and their typical electronic and optoelectronic applications including light sources, optical modulators, photodetectors, field-effect transistors, and logic circuits are summarized. The device configurations, operation mechanisms, and device figures-of-merit are introduced and discussed. By discussing the recent advances, future trends, and existing challenges of 2D materials and their optoelectronic devices, this review has provided an insight into the perspectives of 2D materials for optoelectronic integration and may guide the development of this field within the research community.
机译:二维材料具有广泛的物理特性,其电子带隙从零到几电子伏不等,为探索新型电子和光电功能提供了丰富的平台。值得注意的是,原子薄的二维材料非常适合集成在光电电路中,因为它们具有超薄的体、强烈的光-物质相互作用以及与当前硅光子技术的兼容性。本文概述了在光电器件中使用二维材料和集成的最新技术。总结了二维材料的光电特性及其典型的电子和光电应用,包括光源、光调制器、光电探测器、场效应晶体管和逻辑电路。介绍了器件的配置、运行机制和器件的品质因数。本文综述了二维材料及其光电器件的最新进展、未来趋势和挑战,为二维材料在光电集成领域的应用提供了深入的见解,并可能指导该领域在研究界的发展。

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