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Luminescent graphene quantum dots fabricated by pulsed laser synthesis

机译:脉冲激光合成制备的发光石墨烯量子点

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摘要

Graphene has been the subject of intense research in recent years due to its unique electrical, optical and mechanical properties. Furthermore, it is expected that quantum dots of graphene would make their way into devices due to their structure and composition which unify graphene and quantum dots properties. Graphene quantum dots (GQDs) are planar nano flakes with a few atomic layers thick and with a higher surface-to-volume ratio than spherical carbon dots (CDs) of the same size. We have developed a pulsed laser synthesis (PLS) method for the synthesis of GQDs that are soluble in water, measure 2–6 nm across, and are about 1–3 layers thick. They show strong intrinsic fluorescence in the visible region. The source of fluorescence can be attributed to various factors, such as: quantum confinement, zigzag edge structure, and surface defects. Confocal microscopy images of bacteria exposed to GQDs show their suitability as biomarkers and nano-probes in high contrast bioimaging.
机译:石墨烯由于其独特的电,光学和机械性能,近年来已成为研究的热点。此外,由于它们的结构和组成使石墨烯和量子点的性能统一,因此预期石墨烯的量子点将进入器件。石墨烯量子点(GQD)是平面纳米片,具有几个原子层的厚度,并且比相同尺寸的球形碳点(CD)的表面积体积比高。我们已经开发了一种脉冲激光合成(PLS)方法,用于合成GQD,这些GQD溶于水,跨度为2–6 nm,厚度约为1-3层。它们在可见光区域显示强内在荧光。荧光源可归因于多种因素,例如:量子限制,锯齿形边缘结构和表面缺陷。暴露于GQD的细菌的共聚焦显微镜图像显示出它们适合作为高对比度生物成像中的生物标志物和纳米探针。

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