Photodetectors Based on Graphene-Semiconductor Hybrid Structures: Recent Progress and Future Outlook

Jintao Fu, Changbin Nie, Feiying Sun, Genglin Li, Xingzhan Wei
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Abstract

The integration of graphene and semiconductor leverages the distinct advantages of different materials and unleashes promising photoresponse generation phenomena, thereby facilitating the advancement of high-performance photodetectors. Notably, the van der Waals interaction enables the combination of graphene with diverse semiconductors, transcending epitaxial lattice matching limitations and offering unprecedented degrees of freedom in materials selection. Moreover, the ongoing development of growth and transfer techniques has also allowed graphene to be merged into existing mature semiconductor processes for large-area image sensors. Here, a review of graphene–semiconductor hybrid photodetectors is presented, aiming to contribute to the broader understanding of these intriguing devices and inspire further research in this exciting field. Firstly, the working principles and device configurations of the graphene–semiconductor hybrid photodetectors are introduced. Subsequently, recent progress in photodetectors featuring graphene–semiconductor hybrid structures is summarized, which showcases the cutting-edge achievements and breakthroughs. Finally, the remaining challenges in this type of device are analyzed, and future development prospects are also highlighted.
基于石墨烯-半导体杂化结构的光电探测器:最新进展与展望
石墨烯和半导体的集成利用了不同材料的独特优势,释放出有前途的光响应产生现象,从而促进了高性能光电探测器的发展。值得注意的是,范德华相互作用使石墨烯与多种半导体相结合,超越了外延晶格匹配的限制,并在材料选择方面提供了前所未有的自由度。此外,生长和转移技术的持续发展也使石墨烯能够融合到现有的成熟半导体工艺中,用于大面积图像传感器。本文对石墨烯-半导体混合光电探测器进行了综述,旨在促进对这些有趣器件的更广泛理解,并激发这一激动人心的领域的进一步研究。首先,介绍了石墨烯-半导体混合光电探测器的工作原理和器件结构。总结了近年来石墨烯-半导体杂化结构光电探测器的研究进展,展示了最新的研究成果和突破。最后,分析了该类器件还存在的挑战,并对未来的发展前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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