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The preparation of anisotropic hybrid nanostructures based on CdSe and CdS by the ligand combination method

机译:各向异性混合的准备基于CdSe和cd的纳米结构配体结合的方法

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CdSe and CdS nanoparticles (NPs) are type I II-VI semiconductor materials with excellent optical properties. Usually various shapes of these NPs show a strong emission only from a CdSe or CdS single domain, while the emission from a CdSe core combined with a CdS shell is effectively suppressed due to the ultrafast hole relaxation from the CdS shell into the CdSe core. Therefore, the design and synthesis of heteronanostructures based on CdSe or CdS is of paramount importance in designing the ways of integrating these useful semiconductor materials into complex hybrid structures. Here we demonstrate the ligand-combination inducing growth method to prepare anisotropic core-shell (semiconductor-semiconductor) heteronanostructures, as well as anisotropic Au-semiconductor heteronanostructures. The NPs' anisotropic shape was confirmed by tilting a grid in TEM and their elemental composition was ascertained using EDX mapping in STEM mode. Furthermore, the photoluminescence excitation spectra were studied showing potential applications based on their unique optical properties. We believe that the mechanism investigation, the synthetic control, the obtained novel hybrid nanostructures and their optical properties will open doors to future studies on heterostructures based on semiconductors.
机译:CdSe和cd纳米颗粒(NPs)是我族化合物类型半导体材料具有优良的光属性。只显示一个强烈发射从CdSe或cd单独的域,而从CdSe发射核心加上cd壳是有效的放松抑制由于超速的洞从CdS壳CdSe核心。heteronanostructures的设计和合成基于CdSe或cd是至关重要的在设计集成这些有用的方法半导体材料在复杂的混合结构。ligand-combination诱导生长方法准备各向异性核壳(semiconductor-semiconductor)heteronanostructures以及各向异性Au-semiconductor heteronanostructures。证实了形状各向异性网格倾斜TEM和元素组成确定使用EDX映射在干细胞模式。此外,光致发光激发光谱研究显示潜能基于其独特的光学的应用程序属性。调查,综合控制,新颖的混合纳米结构及其获得的光学特性将打开未来的大门研究异质结构的基础上半导体。

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