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首页> 外文期刊>ACS nano >Assembly of three-dimensional hetero-epitaxial ZnO/ZnS core/shell nanorod and single crystalline hollow ZnS nanotube arrays
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Assembly of three-dimensional hetero-epitaxial ZnO/ZnS core/shell nanorod and single crystalline hollow ZnS nanotube arrays

机译:三维异质外延ZnO / ZnS核/壳纳米棒和单晶空心ZnS纳米管阵列的组装

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摘要

Hetero-epitaxial growth along three-dimensional (3D) interfaces from materials with an intrinsic large lattice mismatch is a key challenge today. In this work we report, for the first time, the controlled synthesis of vertically aligned ZnO/ZnS core/shell nanorod arrays composed of single crystalline wurtzite (WZ) ZnS conformally grown on ZnO rods along 3D interfaces through a simple two-step thermal evaporation method. Structural characterization reveals a '(01-10) _(ZnO)//(01-10) _(ZnS) and [0001] _(ZnO)//[0001] ZnS' epitaxial relationship between the ZnO core and the ZnS shell. It is exciting that arrays of single crystalline hollow ZnS nanotubes are also innovatively obtained by simply etching away the inner ZnO cores. On the basis of systematic structural analysis, a rational growth mechanism for the formation of hetero-epitaxial core/shell nanorods is proposed. Optical properties are also investigated via cathodoluminescence and photoluminescence measurements. Remarkably, the synthesized ZnO/ZnS core/shell heterostructures exhibit a greatly reduced ultraviolet emission and dramatically enhanced green emission compared to the pure ZnO nanorods. The present single-crystalline heterostructure and hollow nanotube arrays are envisaged to be highly promising for applications in novel nanoscale optoelectronic devices, such as UV-A photodetectors, lasers, solar cells, and nanogenerators.
机译:如今,具有固有大晶格失配的材料沿三维(3D)界面异质外延生长是一个关键挑战。在这项工作中,我们首次报告了通过简单的两步热蒸发沿着3D界面共形生长在ZnO棒上的单晶纤锌矿(WZ)ZnS组成的垂直排列的ZnO / ZnS核/壳纳米棒阵列的受控合成。方法。结构表征揭示了'(01-10)_(ZnO)//(01-10)_(ZnS)和[0001] _(ZnO)// [0001] ZnS'在ZnO核与ZnS壳之间的外延关系。令人兴奋的是,还可以通过简单地蚀刻掉内部ZnO内核来创新地获得单晶空心ZnS纳米管的阵列。在系统结构分析的基础上,提出了形成异质外延核/壳纳米棒的合理生长机理。还通过阴极发光和光致发光测量来研究光学性质。值得注意的是,与纯ZnO纳米棒相比,合成的ZnO / ZnS核/壳异质结构表现出大大降低的紫外线发射和显着增强的绿色发射。设想本单晶异质结构和中空纳米管阵列对于在新型纳米级光电器件中的应用是非常有前途的,所述新型纳米光电器件例如为UV-A光电探测器,激光器,太阳能电池和纳米发电机。

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