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Nanoscale semiconductor-insulator-metal core/shell heterostructures: facile synthesis and light emission

机译:纳米级semiconductor-insulator-metal核/壳异质结构:灵巧的合成及光发射

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摘要

Controllably constructing hierarchical nanostructures with distinct components and designed architectures is an important theme of research in nanoscience, entailing novel but reliable approaches of bottom-up synthesis. Here, we report a facile method to reproducibly create semiconductor-insulator-metal core/shell nanostructures, which involves first coating uniform MgO shells onto metal oxide nanostructures in solution and then decorating them with Au nanoparticles. The semiconductor nanowire core can be almost any material and, herein, ZnO, SnO2 and In2O3 are used as examples. We also show that linear chains of short ZnO nanorods embedded in MgO nanotubes and porous MgO nanotubes can be obtained by taking advantage of the reduced thermal stability of the ZnO core. Furthermore, after MgO shell-coating and the appropriate annealing treatment, the intensity of the ZnO near-band-edge UV emission becomes much stronger, showing a 25-fold enhancement. The intensity ratio of the UV/visible emission can be increased further by decorating the surface of the ZnO/MgO nanowires with high-density plasmonic Au nanoparticles. These heterostructured semiconductor-insulator-metal nanowires with tailored morphologies and enhanced functionalities have great potential for use as nanoscale building blocks in photonic and electronic applications.
机译:可控的构造层次纳米结构与不同的组件架构设计是一个重要的主题纳米科学的研究,这就增加了小说可靠的自底向上的方法合成。我们报告一个简单地创建方法semiconductor-insulator-metal核/壳纳米结构,包括第一涂层统一采用壳到金属氧化物纳米结构在溶液中,然后装修Au纳米颗粒。纳米线可以几乎任何材料和核心,在此,氧化锌,SnO2和光谱研究作为例子。我们还表明,线性链短的氧化锌纳米棒嵌在采用纳米管和多孔分别纳米管可以利用获得的氧化锌核心的热稳定性降低。此外,后分别以shell-coating和适当的退火处理,强度氧化锌near-band-edge紫外线发射变得太多强,显示25倍的提高。紫外/可见发射的强度比进一步增加了装饰的表面氧化锌/分别与高密度电浆纳米线非盟纳米颗粒。semiconductor-insulator-metal纳米线与定制的形态和增强使用功能有很大的潜力纳米光子和构建块电子应用程序。

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