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首页> 外文期刊>Materials & design >Self-templating faceted and spongy single-crystal ZnO nanorods: Resistive switching and enhanced piezoresponse
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Self-templating faceted and spongy single-crystal ZnO nanorods: Resistive switching and enhanced piezoresponse

机译:自模板多面海绵状单晶ZnO纳米棒:电阻切换和增强的压电响应

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摘要

A template-free, cost-effective, hydrothermal procedure is used to synthesize large areas of either faceted or spongy self-standing single-crystalline ZnO nanorods (NRs) from electrodeposited Zn films. The morphology of the NRs (faceted versus spongy) can be easily adjusted by simply varying the electrodeposition parameters of the parent Zn film. The obtained NRs exhibit an enhanced piezoelectric response (compared to bulk ZnO) and resistive switching properties which depend on their intrinsic morphology. This combination of properties together with the simplicity of the synthetic approach is particularly appealing for the fabrication of large arrays of nanosensors, nanoactuators and other applications that could benefit from an enhanced surface area in single crystalline semiconductors. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用无模板,经济高效的水热程序可从电沉积的Zn膜合成大面积的多面或海绵状自立式单晶ZnO纳米棒(NRs)。 NR的形态(刻面或海绵状)可以通过简单地改变母体Zn膜的电沉积参数来轻松调整。所获得的NRs表现出增强的压电响应(与本体ZnO相比)和电阻转换特性,这取决于它们的固有形态。特性的这种结合以及合成方法的简单性特别适合制造大型阵列的纳米传感器,纳米致动器和其他可从单晶半导体表面积增加中受益的应用。 (C)2017 Elsevier Ltd.保留所有权利。

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