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Synthesis of green fluorescent carbon dots from carbon nano-onions and graphene oxide

机译:碳纳米洋葱和石墨烯的绿色荧光碳点合成

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In recent years, carbon dots (CDs) have triggered considerable interest due to their intriguing tunable photoluminescence properties. In this work, we report the synthesis of green-emitting CDs from two different carbon sources, namely carbon nano-onions and graphene oxide. We also investigate the effects of the two starting materials on the physico-chemical properties of the as-synthesised CDs. Our results show that both CDs exhibit remarkable emission properties and different fluorescence behaviour, which is attributed to the differences in size, surface defects, as well as the presence of different surface functional groups. Moreover, we propose an innovative, low-cost and time-saving method for the recovery of CDs from solution by acetone-mediated precipitation. We demonstrate that this methodology can rival the common dialysis-based purification approach; it shows excellent photostability, and the CD fluorescent properties are retained. Our work paves the way for the use of these particles for biomedical applications by exploiting their interesting fluorescent features as well as their oxygen-enriched surface for further functionalization strategies.
机译:近年来,由于其有趣的可调谐光致发光性能,碳点(CDS)引起了相当大的兴趣。在这项工作中,我们报告了来自两种不同碳源,即碳纳米洋葱和石墨烯和石墨烯氧化物的绿色发射Cds的合成。我们还研究了两种起始材料对合成CDS的物理化学性质的影响。我们的研究结果表明,两个CD表现出显着的发光性能和不同的荧光行为,归因于尺寸,表面缺陷的差异以及不同表面官能团的存在。此外,我们提出了一种通过丙酮介导的沉淀来恢复CD的创新,低成本和节省时间的方法。我们证明这种方法可以媲美基于常见的透析纯化方法;它显示出优异的光稳定性,保留CD荧光性质。我们的工作通过利用它们的有趣的荧光特征以及它们的富氧表面以进一步官能化策略来铺平使用这些颗粒来使用这些颗粒的方法。

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