High-performance visible and near-infrared dual-band photodetector based on anisotropic 2D NbS3 with perpendicularly reversed polarization behaviors

IF 22.7 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Infomat Pub Date : 2024-10-02 DOI:10.1002/inf2.12625
Jidong Liu, Haibo Gan, Qiaoyan Hao, Yonghong Zeng, Youning Gong, Jiaqi Zhu, Jiarui Huang, Fei Liu, Wenjing Zhang
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Abstract

Dual-band photodetectors exhibit considerable advantages in target discrimination and navigation compared to single-band devices in complex circumstances. However, it remains a major challenge to overcome the limitations of traditional devices in terms of their integration with multiple light-absorbing layers and complicated optical components. In this study, a visible and near-infrared (NIR) dual-band polarimetric photodetector with a single light-absorbing layer is constructed by utilizing the distinctive conversion of linear dichroism (LD) polarity in two-dimensional niobium trisulfide (NbS3). The NbS3 photodetector exhibits selective detection behaviors in the visible and NIR bands, in which by switching the polarization angle of the incident light from 0° to 90°, photocurrent decreases in the visible region, and increases in the NIR region. Specifically, the degrees of linear polarization of photocurrent are 0.59 at 450 nm and −0.47 at 1300 nm, respectively. The opposite photoresponse in the visible and NIR bands of the photodetector significantly enhances the dual-band information recognition. Therefore, clear visible and NIR dual-band polarimetric imaging is accurately realized based on the NbS3 photodetector taking advantage of its fast response speed of 28 μs. Such anisotropic materials, with unique LD conversion features, can facilitate selective modulation between the visible and NIR spectral ranges and promote the development of next-generation multi-dimensional photodetection for various applications, including com/puter vision, surveillance, and biomedical imaging.

Abstract Image

基于垂直反极化行为的各向异性二维NbS3的高性能可见光和近红外双波段光电探测器
在复杂环境下,与单波段光电探测器相比,双频光电探测器在目标识别和导航方面具有相当大的优势。然而,克服传统器件在集成多光吸收层和复杂光学元件方面的局限性仍然是一个主要挑战。在本研究中,利用二维三硫化铌(NbS3)的线性二色性(LD)极性的独特转换,构建了具有单吸光层的可见和近红外(NIR)双频偏振光电探测器。NbS3光电探测器在可见光和近红外波段表现出选择性的探测行为,通过将入射光的偏振角从0°切换到90°,光电流在可见光区减小,在近红外区增大。其中,光电流的线极化度在450 nm处为0.59,在1300 nm处为- 0.47。光电探测器在可见光和近红外波段的相反光响应显著增强了双波段信息识别。因此,利用NbS3光电探测器28 μs的快速响应速度,精确地实现了清晰的可见光和近红外双频偏振成像。这种各向异性材料具有独特的LD转换特性,可以促进可见光和近红外光谱范围之间的选择性调制,并促进下一代多维光探测的发展,用于各种应用,包括计算机视觉,监控和生物医学成像。
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来源期刊
Infomat
Infomat MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
37.70
自引率
3.10%
发文量
111
审稿时长
8 weeks
期刊介绍: InfoMat, an interdisciplinary and open-access journal, caters to the growing scientific interest in novel materials with unique electrical, optical, and magnetic properties, focusing on their applications in the rapid advancement of information technology. The journal serves as a high-quality platform for researchers across diverse scientific areas to share their findings, critical opinions, and foster collaboration between the materials science and information technology communities.
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阿拉丁
Nb powder
阿拉丁
S powder
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