High‐Performance Flexible PbS Nanofilm Wavelength Sensor with Detection Region Ranging from DUV to NIR

Feng‐Xia Liang, Yi Hu, Zhi‐Guo Zhu, Zhi‐Cheng Wu, Jie Yu, Li‐Yan Liang, Jiang Wang, Li Wang, Chun‐Yan Wu, Pingan Song, Lin‐Bao Luo
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Abstract

In this study, on the fabrication of a flexible wavelength sensor is reported, which is achieved by growing a layer of lead sulfide (PbS) nanofilm on both sides of a polyethylene terephthalate substrate using the chemical bath deposition method, followed by the deposition of two parallel Au interdigital electrodes. Experimental result shows that the photocurrent ratio of the two photodetectors monotonically decreases with increasing wavelength in the range from 265 nm (UV) to 2000 nm (NIR), indicating that the incident light wavelength can be distinguished by the photocurrent ratio. Notably, the as‐constructed wavelength sensor exhibits superior performance compared to most previously reported filter‐less designs, achieving an average absolute error of 11.5 nm and an average relative error of 1.1%. It is also found that the sensor exhibits excellent mechanical flexibility and environmental stability. Furthermore, by introducing the back‐end circuit, real‐time detection of the wavelength of monochromatic light and the peak wavelength of LED light are achieved, with detection errors not exceeding 2.8% and 2.6%, respectively. It is believed that the flexible PbS nanofilm wavelength sensor prepared in this study has potential application in future portable and flexible optoelectronic devices.

Abstract Image

检测区域从紫外到近红外的高性能柔性 PbS 纳米薄膜波长传感器
本研究报告介绍了一种柔性波长传感器的制作方法,该方法是利用化学浴沉积法在聚对苯二甲酸乙二醇酯基底的两面生长一层硫化铅(PbS)纳米薄膜,然后沉积两个平行的金互生电极。实验结果表明,在 265 纳米(紫外)到 2000 纳米(近红外)的波长范围内,两个光电探测器的光电流比随着波长的增加而单调递减,这表明入射光波长可以通过光电流比来区分。值得注意的是,与之前报道的大多数无滤光片设计相比,所构建的波长传感器表现出更优越的性能,其平均绝对误差为 11.5 nm,平均相对误差为 1.1%。研究还发现,该传感器具有出色的机械灵活性和环境稳定性。此外,通过引入后端电路,实现了对单色光波长和 LED 光峰值波长的实时检测,检测误差分别不超过 2.8% 和 2.6%。相信本研究制备的柔性 PbS 纳米薄膜波长传感器有望应用于未来的便携式柔性光电设备中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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