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基于四方相VO(A)纳米棒网络构建低成本、高性能的柔性光电探测器。

Building Low-Cost, High-Performance Flexible Photodetector Based on Tetragonal Phase VO (A) Nanorod Networks.

作者信息

Lin Wenhui, Tang Chaoyang, Wang Feiyu, Zhu Yiyu, Wang Zhen, Li Yifan, Wu Qiuqi, Lei Shuguo, Zhang Yi, Hou Jiwei

机构信息

Department of Physics, School of Physical and Mathematical Science, Nanjing Tech University, Nanjing 211816, China.

School of Energy Science and Engineering, Nanjing Tech University, Nanjing 211816, China.

出版信息

Materials (Basel). 2023 Oct 14;16(20):6688. doi: 10.3390/ma16206688.

Abstract

We present a straightforward and cost-effective method for the fabrication of flexible photodetectors, utilizing tetragonal phase VO (A) nanorod (NR) networks. The devices exhibit exceptional photosensitivity, reproducibility, and stability in ambient conditions. With a 2.0 V bias voltage, the device demonstrates a photocurrent switching gain of 1982% and 282% under irradiation with light at wavelengths of 532 nm and 980 nm, respectively. The devices show a fast photoelectric response with rise times of 1.8 s and 1.9 s and decay times of 1.2 s and 1.7 s for light at wavelengths of 532 nm and 980 nm, respectively. In addition, the device demonstrates exceptional flexibility across large-angle bending and maintains excellent mechanical stability, even after undergoing numerous extreme bending cycles. We discuss the electron transport process within the nanorod networks, and propose a mechanism for the modulation of the barrier height induced by light. These characteristics reveal that the fabricated devices hold the potential to serve as a high-performance flexible photodetector.

摘要

我们展示了一种利用四方相VO(A)纳米棒(NR)网络制造柔性光电探测器的简单且经济高效的方法。这些器件在环境条件下表现出卓越的光敏性、可重复性和稳定性。在2.0 V偏置电压下,该器件在波长为532 nm和980 nm的光照射下,光电流开关增益分别为1982%和282%。该器件显示出快速的光电响应,对于波长为532 nm和980 nm的光,上升时间分别为1.8 s和1.9 s,衰减时间分别为1.2 s和1.7 s。此外,该器件在大角度弯曲时表现出卓越的柔韧性,即使经过多次极端弯曲循环后仍保持出色的机械稳定性。我们讨论了纳米棒网络内的电子传输过程,并提出了光诱导势垒高度调制的机制。这些特性表明,所制造的器件具有作为高性能柔性光电探测器的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6c7/10607982/fc8394d4e10b/materials-16-06688-g001.jpg

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