材料科学
量子点
光电子学
光致发光
石墨烯
放大自发辐射
波导管
光学
纳米技术
物理
激光器
作者
Tsukasa Nagafusa,Yuya Hara,Koji Nishio,Toshiyuki Isshiki,K. Yamashita
标识
DOI:10.1002/adom.202200255
摘要
Abstract Graphene quantum dots (GQDs) showing a wide‐range tunability in their emission wavelength are promising materials for next‐generation optoelectronic applications. However, there are few studies on optical amplification functionalities for broadband emission of GQDs. Here, the authors demonstrate a broadband optical amplification of GQDs mixed with a polymer matrix. The GQD particles prepared by microwave‐assisted hydrothermal method show a large variation in their dimension and a broadband emission with a large Stokes shift. In a form of polymeric thin film, the GQDs exhibit amplified spontaneous emission (ASE) signal showing the broadband gain of ≈370–650 nm and the gain coefficient up to ≈4 cm –1 . Cut‐off mode propagation is the origin of ASE signal generation. The optical amplification performance is found to be associated to the photoluminescence quantum yield, which is improved by the GQDs passivation with the polymer matrix. These results demonstrate that the GQDs are a promising active material as a wideband optical amplification medium.
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