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Synthesis and characterization of CdTe/CdS and CdTe/CdSe core/shell type-II quantum dots in a noncoordinating solvent

机译:非配位溶剂中CdTe / CdS和CdTe / CdSe核/壳II型量子点的合成与表征

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A synthetic route to CdTe/CdS and CdTe/CdSe core/shell type-II quantum dots in noncoordinating solvents (1-octadecene) was obtained. The results showed redshift in the emission spectra of CdTe/CdS and CdTe/CdSe compared with the CdTe core nanocrystals. This phenomenon is believed to indicate the formation of core/shell nanostructures. Transmission electron microscopy and powder x-ray diffraction were also consistent with nanocrystals containing a core of nearly monodisperse CdTe with CdS or CdSe capping. The photoluminescence quantum yield was enhanced by epitaxial growth of CdS or CdSe shells. Stepwise increasing concentration of sulfur or selenium monomers into the CdTe core solution allowed the examination of monomer activities, which are very relevant for synthesizing core/shell quantum dots.
机译:获得了在非配位溶剂(1-十八碳烯)中合成CdTe / CdS和CdTe / CdSe核/壳II型量子点的合成路线。结果表明,与CdTe核心纳米晶体相比,CdTe / CdS和CdTe / CdSe的发射光谱发生了红移。据信这种现象表明核/壳纳米结构的形成。透射电子显微镜和粉末X射线衍射也与含有CdS或CdSe封端的几乎单分散CdTe核的纳米晶体一致。通过外延生长CdS或CdSe壳层可以提高光致发光量子产率。逐步增加CdTe核心溶液中硫或硒单体的浓度可以检查单体活性,这与合成核/壳量子点非常相关。

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