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Cadmium selenide and zinc sulfide nanoparticles - challenges in synthesis revealed through optical properties

机译:硒化镉和硫化锌纳米粒子 - 通过光学性质揭示的合成挑战

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Semiconductor nanoparticles, also called quantum dots (QDs), are emerging as the new class of fluorescent labeling materials in biological applications. In comparison with fluorescent dyes, QDs have unique optical and electronic properties: size-tunable light emission, high brightness, broad excitation with possible simultaneous excitation of multiple fluorescent colors. One of the key challenges for synthesis chemistry is to produce small size and monodisperse (single color) QDs with high reproducibility. In this report we describe synthesis and characterization of CdSe and ZnS QDs using two different synthesis approaches. The first is carried out at high temperature in Trioctyl-Phosphine Oxide (TOPO) as a coordinating solvent, while the second synthesis is carried out at lower temperature in ethylene glycol. We present the challenges in nanoparticle synthesis and show ways, in which these could be overcome.
机译:半导体纳米颗粒,也称为量子点(QDS),作为生物应用中的新类荧光标记材料。 与荧光染料相比,QD具有独特的光学和电子特性:尺寸可调发光,高亮度,宽度激励,同时激励多种荧光。 合成化学的关键挑战之一是产生具有高再现性的小尺寸和单分散(单色)QD。 在本报告中,我们使用两个不同的合成方法描述CDSE和ZnS QD的合成和表征。 首先是在三乙基氧化膦(TOPO)中以坐标溶剂在高温下进行,而第二合成在乙二醇中的较低温度下进行。 我们介绍了纳米粒子合成的挑战,并展示了这些方法,其中可以克服这些方式。

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