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作 者:吴云 曹正义 陶然 张广琦[1,3] 李忠辉 WU Yun;CAO Zhengyi;TAO Ran;ZHANG Guangqi;LI Zhonghui(CETC Key Laboratory of Carbon‑based Electronics,Nanjing,210016,CHN;National Key Laboratory of Solid‑state Microwave Devices and Circuits,Nanjing,210016,CHN;Nanjing Electronic Devices Institute,Nanjing,210016,CHN)
机构地区:[1]中国电科碳基电子重点实验室,南京210016 [2]固态微波器件与电路全国重点实验室,南京210016 [3]南京电子器件研究所,南京210016
出 处:《固体电子学研究与进展》2024年第6期576-584,共9页Research & Progress of SSE
摘 要:石墨烯具有极高的迁移率和光电耦合效率,展示出的光电性能远超硅及其他光电材料,此外石墨烯在异质集成时不受晶格匹配的限制,可同多种材料实现完美兼容,这对面临多材料体系集成挑战的光电集成技术而言,几乎是理想材料。本文聚焦石墨烯在光电集成技术方面的优势,回顾了石墨烯在光电探测器、电光调制器方面的研究进展,总结各类器件的优势及存在的缺陷,并就石墨烯在光电集成方面的未来发展进行了展望。Graphene has extremely high mobility and optoelectronic coupling efficiency,exhibiting optoelectronic properties far superior to silicon and other materials.In addition,graphene is free from lattice matching and can achieve perfect compatibility with many materials,which makes it an ideal material for optoelectronic applications.In this article,the advantages of graphene in optoelectronic integration technology are highlighted,the research progress of graphene in photodetectors and electro-optic modulators are reviewed,the advantages and disadvantages of various devices are summarized,and the future development of graphene in optoelectronic integration is also discussed.
分 类 号:TN929.1[电子电信—通信与信息系统] TQ127.11[电子电信—信息与通信工程]
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