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A facile hydrothermal approach for the density tunable growth of ZnO nanowires and their electrical characterizations

机译:ZnO纳米线密度可调生长的简便水热方法及其电学表征

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摘要

Controlling properties of one-dimensional (1D) semiconducting nanostructures is essential for the advancement of electronic devices. In this work, we present a low-temperature hydrothermal growth process enabling density control of aligned high aspect ratio ZnO nanowires (NWs) on seedless Au surface. A two order of magnitude change in ZnO NW density is demonstrated via careful control of the ammonium hydroxide concentration (NH4OH) in the solution. Based on the experimental observations, we further, hypothesized the growth mechanism leading to the density controlled growth of ZnO NWs. Moreover, the effect of NH4OH on the electrical properties of ZnO NWs, such as doping and field-effect mobility, is thoroughly investigated by fabricating single nanowire field-effect transistors. The electrical study shows the increase of free charge density while decrease of mobility in ZnO NWs with the increase of NH4OH concentration in the growth solution. These findings show that NH4OH can be used for simultaneous tuning of the NW density and electrical properties of the ZnO NWs grown by hydrothermal approach. The present work will guide the engineers and researchers to produce low-temperature density controlled aligned 1D ZnO NWs over wide range of substrates, including plastics, with tunable electrical properties.
机译:一维(1D)半导体纳米结构的控制特性对于电子设备的发展至关重要。在这项工作中,我们提出了一种低温水热生长工艺,该工艺能够控制无核金表面上对准的高长径比ZnO纳米线(NWs)的密度。通过仔细控制溶液中的氢氧化铵浓度(NH4OH),可以证明ZnO NW密度有两个数量级的变化。根据实验观察结果,我们进一步假设了导致ZnO NW密度控制生长的生长机理。此外,通过制造单个纳米线场效应晶体管,彻底研究了NH4OH对ZnO NWs的电性能(如掺杂和场效应迁移率)的影响。电学研究表明,随着生长溶液中NH4OH浓度的增加,ZnO NWs的自由电荷密度增加,迁移率降低。这些发现表明,NH 4 OH可用于同时调节通过水热法生长的ZnO NW的NW密度和电性能。本工作将指导工程师和研究人员在包括塑料在内的各种基材上生产具有可调电性能的低温密度受控的对齐一维ZnO NW。

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