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Facile synthesis and photoluminescence characteristics of blue-emitting nitrogen-doped graphene quantum dots

机译:发射蓝光的氮掺杂石墨烯量子点的简便合成与光致发光特性

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摘要

A one-step hydrothermal method for synthesizing nitrogen-doped graphene quantum dots (N-GQDs) from organic carbon sources is presented in this paper. The high-quality N-GQDs can be obtained via tuning the degree of dehydration/carbonization of citric acid and doping of nitrogen atoms into the graphene lattice. The micromorphology, chemical structure, composition and photoluminescence (PL) characteristics of the N-GQDs were characterized systematically. The size of the obtained N-GQDs is about 5-10 nm with typical topographic heights of 0.8-2.5 nm. There is intense blue emission and excitation-independent PL behavior when the N-GQDs are in aqueous solution. The most remarkable innovation is that the fluorescence quantum yield (FL QY) of our N-GQDs is up to 75.2%, which is much higher than that of most reported GQDs (less than 25%). Thus, it is initially believed that synthesis parameters, hydrothermal process and nitrogen doping may greatly influence the surface state and bandgap of the GQDs, which are important in determining the PL characteristics of the N-GQDs.
机译:本文提出了一种从有机碳源合成氮掺杂石墨烯量子点(N-GQDs)的一步法。可以通过调节柠檬酸的脱水/碳化程度以及将氮原子掺杂到石墨烯晶格中来获得高质量的N-GQD。系统地表征了N-GQD的微观形貌,化学结构,组成和光致发光(PL)特性。获得的N-GQD的尺寸为约5-10nm,典型的地形高度为0.8-2.5nm。当N-GQD处于水溶液中时,强烈的蓝光发射和与激发无关的PL行为。最引人注目的创新是我们的N-GQD的荧光量子产率(FL QY)高达75.2%,远高于大多数报道的GQD(不到25%)。因此,最初认为,合成参数,水热过程和氮掺杂会极大地影响GQD的表面状态和带隙,这对于确定N-GQD的PL特性很重要。

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