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Study on Ultrasonic Single-Step Synthesis and Optical Properties of Nitrogen-Doped Carbon Fluorescent Quantum Dots

机译:氮掺杂碳荧光量子点的超声一步法合成及光学性质研究

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摘要

Nitrogen doped carbon fluorescent quantum dots (NDCFDs) with downconversion fluorescent and upconversion fluorescence properties were prepared by an ultrasonic one-step process. The raw materials and reagents were inexpensive and easy to obtain. The effect of ultrasonic time and reaction temperature on the fluorescent quantum yield and particle size was study. Optimal preparation conditions of NDCFDs with the highest fluorescence quantum yield were achieved by employing a reaction time of 14 h at 50 degrees C. NDFCDs were characterized by TEM, FTIR, Raman spectroscopy, XPS, UV spectrophotometer, and fluorescence spectrometer. The results showed that the surface of NDCFDs were rich in hydroxyl, carbonyl hydrophilic group, etc. The DNCFDs not only had downconversion fluorescent, but also had good upconversion fluorescence. The effect of concentration and type of solution on the fluorescence properties of NDCFDs was studied. The formation mechanism, fluorescence emission mechanism and self-assembly behavior of NDCFDs were also investigated.
机译:通过超声一步法制备了具有下转换荧光和上转换荧光特性的氮掺杂碳荧光量子点(NDCFDs)。原料和试剂便宜且易于获得。研究了超声时间和反应温度对荧光量子产率和粒径的影响。通过在50摄氏度下反应14小时,达到了具有最高荧光量子产率的NDCFDs的最佳制备条件。NDFCDs通过TEM,FTIR,拉曼光谱,XPS,UV分光光度计和荧光光谱仪进行了表征。结果表明,NDCFDs的表面富含羟基,羰基亲水基团等。DNCFDs不仅具有下转换荧光,而且具有良好的上转换荧光。研究了溶液的浓度和类型对NDCFDs荧光性质的影响。还研究了NDCFDs的形成机理,荧光发射机理和自组装行为。

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