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Optimization of one-step and one-substrate synthesis of carbon nanodots by microwave pyrolysis

机译:微波热解法一步一步合成碳纳米点的优化

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The effect of water on the optical properties and concentration of carbon nanodots (CND), prepared by microwave heating of a mixture of polyethylene glycol 200 (PEG-200) and water, was studied. It was shown that the presence of water as a substrate leads to the synthesis of CND with lower yield and optical properties and it is better to use only PEG-200 as the substrate. Microwave power and irradiation time as two important variables in the synthesis of CND from a single substrate (PEG-200) were optimized to obtain CND with a high yield. The CND obtained under the best conditions were characterized by TEM, XRD, UV-Visible, fluorescence spectroscopy and fluorescence imaging. Consequently, photostability of the prepared CND in acidic and alkaline mediums was studied. Finally, it was shown that the produced CND can be used as a green and cheap reagent for fast detection of metronidazole based on fluorescence quenching.
机译:研究了水对通过微波加热聚乙二醇200(PEG-200)和水的混合物制得的碳纳米点(CND)的光学特性和浓度的影响。结果表明,水作为底物的存在导致CND的合成具有较低的收率和光学性能,最好仅使用PEG-200作为底物。优化了微波功率和辐照时间,这是从单一底物(PEG-200)合成CND的两个重要变量,可以高收率获得CND。通过TEM,XRD,UV-Visible,荧光光谱和荧光成像对在最佳条件下获得的CND进行了表征。因此,研究了制备的CND在酸性和碱性介质中的光稳定性。最后,显示了所产生的CND可以用作绿色廉价试剂,用于基于荧光猝灭的甲硝唑快速检测。

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