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首页> 外文期刊>ACS Omega >Piezoresistive Response of Quasi-One-Dimensional ZnO Nanowires Using an in Situ Electromechanical Device
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Piezoresistive Response of Quasi-One-Dimensional ZnO Nanowires Using an in Situ Electromechanical Device

机译:准一维ZnO纳米线的压阻响应的原位机电装置

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Quasi-one-dimensional structures from metal oxides have shown remarkable potentials with regard to their applicability in advanced technologies ranging from ultraresponsive nanoelectronic devices to advanced healthcare tools. Particularly due to the piezoresistive effects, zinc oxide (ZnO)-based nanowires showed outstanding performance in a large number of applications, including energy harvesting, flexible electronics, smart sensors, etc. In the present work, we demonstrate the versatile crystal engineering of ZnO nano- and microwires (up to centimeter length scales) by a simple flame transport process. To investigate the piezoresistive properties, particular ZnO nanowires were integrated on an electrical push-to-pull device, which enables the application of tensile strain and measurement of in situ electrical properties. The results from ZnO nanowires revealed a periodic variation in stress with respect to the applied periodic potential, which has been discussed in terms of defect relaxations.
机译:金属氧化物的准一维结构在其从超响应纳米电子器件到先进医疗工具等先进技术中的适用性方面显示出了巨大潜力。尤其是由于压阻效应,基于氧化锌(ZnO)的纳米线在包括能量收集,柔性电子,智能传感器等在内的许多应用中均表现出出色的性能。在当前工作中,我们展示了ZnO的通用晶体工程纳米和微丝(最高达厘米长的尺度)通过简单的火焰传输过程。为了研究压阻特性,将特定的ZnO纳米线集成在电推挽式设备中,从而可以施加拉伸应变并测量原位电性能。 ZnO纳米线的结果表明,应力相对于所施加的周期性电势呈周期性变化,这已在缺陷弛豫方面进行了讨论。

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