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纳米尺度半导体-绝缘体-金属核/壳异质结构:简便的合成与发光。

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

机构信息

Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371.

出版信息

Nanoscale. 2011 Aug;3(8):3170-7. doi: 10.1039/c1nr10352k. Epub 2011 Jun 23.

Abstract

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, SnO(2) and In(2)O(3) 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.

摘要

可控构建具有不同组分和设计架构的分级纳米结构是纳米科学研究的一个重要主题,需要新颖但可靠的自下而上合成方法。在这里,我们报告了一种简便的方法,可以可重复地制造半导体-绝缘体-金属核/壳纳米结构,该方法涉及首先在溶液中均匀涂覆 MgO 壳,然后用 Au 纳米粒子对其进行修饰。半导体纳米线核可以是几乎任何材料,在此,我们以 ZnO、SnO(2) 和 In(2)O(3)为例。我们还表明,通过利用 ZnO 核的热稳定性降低,可以获得嵌入在 MgO 纳米管中的短 ZnO 纳米棒的线性链和多孔 MgO 纳米管。此外,在进行 MgO 壳涂覆和适当的退火处理后,ZnO 近带边紫外发射的强度变得更强,增强了 25 倍。通过在 ZnO/MgO 纳米线表面修饰高密度等离子体 Au 纳米粒子,可以进一步提高 UV/可见发射的强度比。这些具有定制形貌和增强功能的异质结构半导体-绝缘体-金属纳米线在光子和电子应用中作为纳米级构建块具有巨大的潜力。

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