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High-Performance Flexible Ultraviolet Photodetectors with Ni/Cu-Codoped ZnO Nanorods Grown on PET Substrates

机译:高性能柔性紫外线光电探测器,Ni / Cu-Codoped ZnO Nanorods在PET基板上生长

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摘要

As a developing technology for flexible electronic device fabrication, ultra-violet (UV) photodetectors (PDs) based on a ZnO nanostructure are an effective approach for large-area integration of sensors on nonconventional substrates, such as plastic or paper. However, photoconductive ZnO nanorods grown on flexible substrates have slow responses or recovery as well as low spectral responsivity R because of the native defects and inferior crystallinity of hydrothermally grown ZnO nanorods at low temperatures. In this study, ZnO nanorod crystallites are doped with Cu or Ni/Cu when grown on polyethylene terephthalate (PET) substrates in an attempt to improve the performance of flexible PDs. The doping with Ni/Cu or Cu not only improves the crystalline quality but also significantly suppresses the density of deep-level emission defects in as-grown ZnO nanorods, as demonstrated by X-ray diffraction and photoluminescence. Furthermore, the X-ray photoelectron spectroscopy analysis shows that doping with the transition metals significantly increases the oxygen bonding with metal ions with enhanced O/Zn stoichiometry in as-grown nanorods. The fabricated flexible PD devices based on an interdigitated electrode structure demonstrates a very high R of ~123 A/W, a high on-off current ratio of ~130, and a significant improvement in transient response speed exhibiting rise and fall time of ~8 and ~3 s, respectively, by using the ZnO nanorods codoped by Ni/Cu.
机译:作为显影技术柔性电子器件制造中,基于在ZnO纳米结构紫外(UV)光检测器(PDS)是用于在非常规的衬底,如塑料或纸传感器的大面积集成的有效方法。然而,生长在柔性基板上的光电导的ZnO纳米棒具有因为本征缺陷和在低温下的水热生长的ZnO纳米棒的结晶性差的缓慢响应或恢复以及低光谱响应度R。在这项研究中,以试图改善的柔性的PD的性能上的聚对苯二甲酸乙二酯(PET)衬底上生长时的ZnO纳米棒的微晶掺杂有Cu或Ni / Cu等。用镍/铜或Cu掺杂不仅改善的结晶质量,而且显著抑制在生长ZnO纳米棒,通过X射线衍射和光致发光所证明的深能级发光的缺陷密度。此外,X射线光电子能谱分析表明,掺杂与过渡金属显著与金属离子与增加了氧粘结增强O /锌的化学计量在生长的纳米棒。所制造的基于叉指电极结构柔性PD设备演示〜123 A / W,通断高的〜130电流比,和在过渡响应速度的显著改善的非常高R表现出〜8上升和下降时间和〜3秒,分别通过使用ZnO纳米棒的Ni / Cu的共掺杂。

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