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具有网络结构铜纳米线电极的高性能柔性 ZnO 纳米棒紫外光电探测器。

High-performance flexible ZnO nanorod UV photodetectors with a network-structured Cu nanowire electrode.

机构信息

Department of Materials Science and Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 120-749, Republic of Korea.

出版信息

Nanoscale. 2016 Sep 22;8(37):16677-16683. doi: 10.1039/c6nr05256h.

Abstract

In this work, vertically aligned zinc oxide (ZnO) nanorod (NR)-based flexible ultraviolet (UV) photodetectors were successfully fabricated on a polyimide (PI) substrate with a copper (Cu) nanowire (NW) electrode. To enhance the flexibility and sensing properties, the entangled networks of Cu NWs were applied to UV photodetectors as a flexible electrode. Here, Cu NWs have a high conductivity with a low cost compared to other metals to achieve a Schottky contact with ZnO NRs. Moreover, because of forming a network structure, the surface of the sensing material has a large contact area with oxygen molecules, resulting in a faster response time. The Cu NW electrode exhibited a high optical transmittance of 90%, a considerable sheet resistance of 50 Ω sq, and a work function of 5.12 eV. Consequentially, the fabricated UV photodetector with Cu NW electrodes showed excellent UV sensing properties with a very fast rising time of 0.7 s and a decay time of 1.9 s in the dark and under UV illumination (365 nm, 0.40 mW cm) at a reverse bias of -2.0 V. Furthermore, during the bending test at a radius of curvature of 5 mm, the flexible ZnO NR UV photodetectors with Cu NW electrodes exhibited almost unchanged UV sensing properties even after 5000 cycles.

摘要

在这项工作中,成功地在聚酰亚胺(PI)基底上制造了基于垂直排列氧化锌(ZnO)纳米棒(NR)的柔性紫外(UV)光探测器,该基底具有铜(Cu)纳米线(NW)电极。为了提高灵活性和传感性能,将纠缠的 CuNW 网络用作柔性电极应用于 UV 光探测器。这里,CuNW 具有与其他金属相比更高的导电性和更低的成本,可与 ZnO NR 形成肖特基接触。此外,由于形成网络结构,感测材料的表面与氧分子具有较大的接触面积,从而导致更快的响应时间。CuNW 电极表现出 90%的高光透过率、相当大的 50Ωsq 的薄层电阻和 5.12eV 的功函数。因此,用 CuNW 电极制造的 UV 光探测器在反向偏压为-2.0V 时,在黑暗中和在 UV 照射(365nm,0.40mWcm)下,具有非常快的上升时间 0.7s 和衰减时间 1.9s 的出色 UV 传感性能。此外,在曲率半径为 5mm 的弯曲测试中,即使经过 5000 次循环,具有 CuNW 电极的柔性 ZnO NR UV 光探测器的 UV 传感性能几乎没有变化。

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