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Luminescent Carbon Dots Synthesized by the Laser Ablation of Graphite in Polyethylenimine and Ethylenediamine

机译:通过聚乙烯和乙二胺中的激光消融石墨的激光烧蚀合成的发光碳点

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摘要

Fluorescent carbon dots (CDs) synthesized by pulsed laser ablation in liquid (PLAL) are still interesting materials due to their possible applications. However, unlike CDs produced by the hydrothermal method, CDs produced the synthesis products by the PLAL method were never separated by dialysis, which differentiates the synthesis products and allows the identification of the main source of fluorescence. In this work, the synthesis of fluorescent carbon dots (CDs) was performed by nanosecond laser ablation of a graphite target immersed in polyethyleneimine (PEI) and ethylenediamine (EDA), and the synthesis products were separated by dialysis. The results of optical measurements showed that the main source of luminescence of the obtained nanostructures are fluorescent particles or quasi-molecular fluorophores created in the ablation process. In the case of ablation in PEI, most of the produced molecular fluorophores are associated with carbogenic nanostructures, while in the case of EDA, free fluorescent molecules dominate.
机译:由于其可能的应用,通过液体(PLA1)中的脉冲激光烧蚀合成的荧光碳点(CDS)是仍然有趣的材料。然而,与水热法产生的CD不同,CD通过PLAL法产生合成产物,从未通过透析分离,其区分合成产物并允许鉴定荧光的主要来源。在这项工作中,通过浸入聚乙烯亚胺(PEI)和乙二胺(EDA)中的石墨靶的纳秒激光烧蚀来进行荧光碳点(CDS)的合成,并通过透析分离合成产物。光学测量结果表明所得纳米结构的发光的主要来源是在消融过程中产生的荧光颗粒或准分子荧光团。在PEI中消融的情况下,大多数产生的分子荧光团与碳纳米结构相关,而在EDA的情况下,游离荧光分子占主导地位。

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