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Carbon Quantum Dots Prepared with Chitosan for Synthesis of CQDs/AuNPs for Iodine Ions Detection

机译:壳聚糖制备的碳量子点用于碘离子检测的CQDs / AuNPs的合成

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Water-soluble and reductive carbon quantum dots (CQDs) were fabricated by the hydrothermal carbonization of chitosan. Acting as a reducing agent and stabilizer, the as-prepared CQDs were further used to synthesize gold nanoparticles (AuNPs). This synthetic process was carried out in aqueous solution, which was absolutely “green”. Furthermore, the CQDs/AuNPs composite was used to detect iodine ions by the colorimetric method. A color change from pink to colorless was observed with the constant addition of I ? ions, accompanied by a decrease in the absorbance of the CQDs/AuNPs composite. According to the absorbance change, a favorable linear relationship was obtained between ΔA and I ? concentration in the range of 20–140 μM and 140–400 μM. The detection limit of iodide ions, depending on the 3δ/slope, was estimated to be 2.3 μM, indicating high sensitivity to the determination of iodide. More importantly, it also showed good selectivity toward I ? over other anion ions, and was used for the analysis of salt samples. Moreover, TEM results indicated that I ? ions induced the aggregation of CQDs/AuNPs, resulting in changes in color and absorbance.
机译:通过壳聚糖的水热碳化制备水溶性和还原性碳量子点(CQD)。用作还原剂和稳定剂,所制备的CQD进一步用于合成金纳米颗粒(AuNP)。该合成过程在绝对“绿色”的水溶液中进行。此外,使用CQDs / AuNPs复合材料通过比色法检测碘离子。不断加入I 2,观察到颜色从粉红色变为无色。离子,伴随着CQDs / AuNPs复合物吸光度的降低。根据吸光度变化,在ΔA和Iδ之间获得良好的线性关系。浓度范围为20–140μM和140–400μM。碘离子的检测限取决于3δ/斜率,估计为2.3μM,表明对碘的测定具有很高的灵敏度。更重要的是,它对I?也表现出良好的选择性。超过其他阴离子,并用于分析盐样品。此外,TEM结果表明I≥1。离子诱导CQD / AuNP聚集,导致颜色和吸光度发生变化。

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