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首页> 外文期刊>Journal of nanomaterials >A Novel Approach to the Fabrication of CdSe Quantum Dots in Aqueous Solution: Procedures for Controlling Size, Fluorescence Intensity, and Stability over Time
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A Novel Approach to the Fabrication of CdSe Quantum Dots in Aqueous Solution: Procedures for Controlling Size, Fluorescence Intensity, and Stability over Time

机译:在水溶液中制备CdSe量子点的新方法:控制尺寸,荧光强度和时间稳定性的程序

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摘要

This paper report a straightforward approach for the synthesis of CdSe quantum dots (CdSe QDs) in aqueous solution. This method, performed in homogeneous phase, affords optimal sizes and high quantum yields for each application desired. It is ana la carteprocedure for the synthesis of nanoparticles aimed at their later application. By controlling the experimental conditions, CdSe QDs of sizes ranging between 2 and 6 nm can be obtained. The best results were achieved in an ice-bath thermostated at 4°C, using mercaptoacetic acid as dispersant. Under these conditions, a slow growth of quantum nanocrystals was generated and this was controlled kinetically by the hydrolysis ofSeSO32-to generateSe2-  in situ, one of the forming species of the nanocrystal. The organic dispersant mercaptoacetate covalently binds to the Cd2+ion, modifying the diffusion rate of the cation, and plays a key role in the stabilization of CdSe QDs. In optimum conditions, when kept in their own solution CdSe QDs remain dispersed over 4 months. The NPs obtained under optimal conditions show high fluorescence, which is a great advantage as regards their applications. The quantum efficiency is also high, owing to the formation under certain conditions of ananoshellof Cd(OH)2, values of 60% being reached.
机译:本文报道了一种在水溶液中合成CdSe量子点(CdSe QDs)的简单方法。在均相中执行的该方法可为所需的每种应用提供最佳的尺寸和高的量子产率。这是针对纳米粒子的后续应用的合成程序。通过控制实验条件,可以获得尺寸在2至6 nm之间的CdSe QD。使用巯基乙酸作为分散剂,在恒温至4°C的冰浴中可获得最佳结果。在这些条件下,产生了量子纳米晶体的缓慢生长,并且通过SeSO 3-的水解对其进行动力学控制,以原位生成Se 2-,纳米晶体的形成物种之一。有机分散剂巯基乙酸酯与Cd2 +离子共价结合,改变阳离子的扩散速率,并在CdSe QD稳定中起关键作用。在最佳条件下,当将CdSe量子点保存在自己的溶液中时,其分散状态会持续4个月。在最佳条件下获得的NP表现出高荧光性,就其应用而言,这是一个很大的优势。由于在某些条件下形成Cd(OH)2的纳米壳,量子效率也很高,达到60%的值。

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