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Piezo-phototronic effect enhanced visible and ultraviolet photodetection using a ZnO-CdS core-shell microanowire

机译:压电光电效应增强了使用ZnO-CdS核壳微/纳米线的可见光和紫外光检测

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The piezo-phototronic effect is about the use of the piezoelectric potential created inside some materials for enhancing the charge carrier generation or separation at the metal-semiconductor contact or pn junction. In this paper, we demonstrate the impact of the piezo-phototronic effect on the photon sensitivity for a ZnO-CdS core-shell microanowire based visible and UV sensor. CdS nanowire arrays were grown on the surface of a ZnO microanowire to form a ZnO-CdS core-shell nanostructure by a facile hydrothermal method. With the two ends of a ZnO-CdS wire bonded on a polymer substrate, a flexible photodetector was fabricated, which is sensitive simultaneously to both green light (548 nm) and UV light (372 nm). Furthermore, the performance of the photon sensor is much enhanced by the strain-induced piezopotential in the ZnO core through modulation of the Schottky barrier heights at the source and drain contacts. This work demonstrates a new application of the piezotronic effect in photon detectors.
机译:压电效应是利用某些材料内部产生的压电势来增强金属-半导体接触或pn结处的载流子产生或分离。在本文中,我们展示了基于ZnO-CdS核壳微/纳米线的可见光和UV传感器的压电效应对光子灵敏度的影响。 CdS纳米线阵列生长在ZnO微米/纳米线的表面上,通过便捷的水热法形成ZnO-CdS核壳纳米结构。将ZnO-CdS导线的两端键合在聚合物基板上,制造了柔性光电探测器,该探测器同时对绿光(548 nm)和紫外光(372 nm)敏感。此外,通过调节源极和漏极触点处的肖特基势垒高度,ZnO核中的应变感应压电势大大提高了光子传感器的性能。这项工作演示了压电效应在光子探测器中的新应用。

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