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Band structure quantization in nanometer sized ZnO ciusters

机译:能带结构量化大小在纳米氧化锌ciusters

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摘要

Nanometer sized ZnO clusters are produced in the gas phase and subsequently deposited on clean Au(111) surfaces under ultrα-high vacuum conditions. The zinc blende atomic structure of the approximately spherical ZnO clusters is resolved by high resolution scanning transmission electron microscopy. The large band gap and weak n-type conductivity of individual clusters are determined by scanning tunnelling microscopy and spectroscopy at cryogenic temperatures. The conduction band is found to exhibit clear quantization into discrete energy levels, which can be related to finite-size effects reflecting the zero-dimensional confinement Our findings illustrate that gas phase cluster production may provide unique possibilities for the controlled fabrication of high purity quantum dots and heterostructures that can be size selected prior to deposition on the desired substrate under controlled ultrα-high vacuum - conditions.
机译:纳米尺寸的氧化锌生产集群气相沉积,随后在清洁非盟(111)表面下ultrα-真空条件。大约球状氧化锌集群通过高分辨率扫描透射来解决电子显微镜。n型单个集群的电导率通过扫描隧道显微镜和决定光谱学在低温下。传导带发现展示清楚量化成离散的能级,可以与——的尺寸效应反映有关吗零维约束我们的发现说明气相集群生产为控制提供独特的可能性量子点和制造高纯度异质结构大小,可以选择之前所需的衬底上沉积控制ultrα-真空条件。

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