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Electrical conduction and photoluminescence properties of solution-grown ZnO nanowires

机译:溶液生长的ZnO纳米线的导电和光致发光特性

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摘要

We report on the optical and electrical properties of zinc oxide nanorods synthesized in solution using Oswald ripening of ZnO nanodots with the addition of ethylenediamene growth directing agent. This method results in high quality, single crystalline ZnO nanorods that extend up to 3 μm in length and have an average diameter of 25±7 nm, compared to ~75 nm diameter for similarly prepared nanorods but without the addition of the growth directing agent. Furthermore, we find that the higher aspect ratio nanorods exhibit strong size-dependent electrical characteristics, with a critical diameter of about 27 nm delimiting nonconductive and conductive behaviors. Theoretical calculations indicate that the origin of this size-dependent conductivity is the presence of surface states that deplete the carriers in the smaller diameter nanorods, and an estimate of the density of these states is provided.
机译:我们报告了在溶液中合成的氧化锌纳米棒的光学和电学性质,该溶液使用ZnO纳米点的Oswald熟化以及添加的乙烯二烯生长导向剂进行合成。这种方法可产生高质量的单晶ZnO纳米棒,其延伸长度可达3μm,平均直径为25±7 nm,而类似制备的纳米棒的直径为〜75 nm,但不添加生长引导剂。此外,我们发现,高纵横比的纳米棒表现出强的尺寸依赖性电特性,临界直径约为27 nm,限制了非导电和导电行为。理论计算表明,这种与尺寸有关的电导率的根源是表面状态的存在,这些表面状态会耗尽直径较小的纳米棒中的载流子,并提供了这些状态密度的估计值。

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