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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >One Pot Green Synthesis of Si Quantum Dots and Catalytic Au Nanoparticle-Si Quantum Dot Nanocomposite
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One Pot Green Synthesis of Si Quantum Dots and Catalytic Au Nanoparticle-Si Quantum Dot Nanocomposite

机译:Si量子点的一种盆栽绿色合成及催化Au纳米粒子-Si量子点纳米复合材料

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摘要

We report a simple, green, and room temperature synthetic route for the formation of Si quantum dots (Si QDs) and Au nanoparticle-Si quantum dot (Au NP-Si QD) nanocomposites. Glucose was used as a reductant for one-pot synthesis of water-dispersible blue emitting Si QDs. The use of simple biomolecules for the generation of functional hybrid materials is of great significance for both economic and environmental benefits. The as prepared Si QDs have an average size of 2.7 nm with emission maximum at 467 nm. These Si QDs showed a reversible thermoresponsive emission in the temperature range of 20-80 degrees C in water and excellent salt tolerance enabling the QDs to be extremely suitable for biomolecular functionalization and use as probes for biological fluorescence imaging. Further, the as prepared hydrophilic Si QDs have been exploited as a reduction reagent to reduce Au3+ ions to Au NPs. The Si QDs also functioned as an effective stabilizer by forming a thin layer over the Au NPs leading to the formation of Au NP-Si QD nanocomposite. This composite material was found to exhibit catalytic activity to reduce nitroarenes. Such multifunctional hybrid nanomaterials are potential candidates for photocatalysis, bioimaging, and sensing applications.
机译:我们报告了一种简单,绿色和室温合成路线,用于形成Si量子点(SiQD)和Au纳米粒子-Si量子点(Au NP-Si QD)纳米复合材料。葡萄糖被用作水分散性蓝色发射Si QD的单罐合成的还原剂。用于产生功能混合材料的简单生物分子对于经济和环境效益具有重要意义。如制备的Si QD在467nm处的发射最大值为2.7nm的平均尺寸。这些SiQD在水中的温度范围内的温度范围内的可逆热敏发射和优异的耐盐性,使得QDS非常适合于生物分子官能化,并用作生物荧光成像的探针。此外,作为制备的亲水性SiQDS已被利用为还原试剂以将Au3 +离子降低至Au nps。 Si QD也通过在Au nps上形成薄层而导致形成Au NP-Si QD纳米复合材料来用作有效稳定剂。发现该复合材料表现出催化活性以减少硝基酮。这种多功能杂交纳米材料是光催化,生物分析和传感应用的潜在候选。

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