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首页> 外文期刊>ACS nano >Diameter-engineered SnO_2 nanowires over contact-printed gold nanodots using size-controlled carbon nanopost array stamps
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Diameter-engineered SnO_2 nanowires over contact-printed gold nanodots using size-controlled carbon nanopost array stamps

机译:使用尺寸控制的碳纳米柱阵列压模,在接触印刷的金纳米点上进行直径工程化的SnO_2纳米线

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摘要

A novel and effective methodology to control the diameters of semiconductor nanowires is reported through a versatile contact-printing method for obtaining size-controlled nanocatalysts by size-tunable carbon-based nanometer stamps. Vertically aligned carbon nanopost arrays, derived from nanoporous alumina templates, are used as the nanoscale stamps for printing of catalyst nanoparticles. The diameter of the carbon nanopost can be engineered by adjusting the pore dimension of the templates. Over the contact-printed Au nanodots in a uniform size distribution, semiconductor SnO_2 nanowires are grown via a vapor-liquid-solid growth mechanism. Consequently, a direct dimension correspondence is achieved between the carbon nanopost stamp, the printed Au catalyst, and the finally obtained SnO_2 nanowires. A model example of the diameter-dependent electrical properties of the semiconductor nanowires is successfully demonstrated in this work by applying three diameter-controlled SnO_2 nanowires to nanowire field effect transistors.
机译:通过通用的接触印刷方法报道了一种新颖有效的控制半导体纳米线直径的方法,该方法通过尺寸可调碳基纳米压模获得尺寸受控的纳米催化剂。源自纳米多孔氧化铝模板的垂直排列的碳纳米柱阵列用作印刷催化剂纳米颗粒的纳米级印模。碳纳米柱的直径可以通过调节模板的孔尺寸来设计。在均匀尺寸分布的接触印刷金纳米点上,半导体SnO_2纳米线通过汽-液-固生长机制生长。因此,在碳纳米柱压模,印刷的Au催化剂和最终获得的SnO_2纳米线之间实现了直接的尺寸对应。通过将三个直径受控的SnO_2纳米线应用于纳米线场效应晶体管,成功地展示了半导体纳米线的直径相关电特性的模型示例。

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