Large‐Format Room‐Temperature Visible‐to‐Mid‐Infrared Broadband Imaging Enabled by a Single 2D Active Material

ABSTRACT Broadband imaging across visible, near‐infrared, and mid‐infrared (VIS‐NIR‐MIR) is a long‐standing goal for applications spanning machine vision, autonomous navigation, remote sensing, and biomedical monitoring. However, current approaches typically require multiple single‐band detectors or heterogeneous material stacks to cover different spectral windows, which add substantial optical and fabrication complexity. Here, we report a large‐pixel‐count, room‐temperature VIS‐NIR‐MIR broadband image sensor enabled by a detector‐array vertical photodiode architecture that uses large‐scale two‐dimensional (2D) black phosphorus (BP) films as a single active material. Operating at room temperature under zero bias, the BP film photodiodes exhibit an intrinsically broadband response spanning 532 nm to 6.2 µm, with specific detectivity ranging from 1.36 × 10 7 cm Hz 1/2 W −1 at 6.2 µm to 1.0 × 10 8 cm Hz 1/2 W −1 at 3.7 µm. We further achieve monolithic integration of the 2D BP film photodiodes with a 640 × 512 silicon readout integrated circuit (ROIC), enabling large‐pixel‐count VIS‐NIR‐MIR broadband imaging using a single active material for the first time, to the best of our knowledge. This work establishes a scalable, ROIC‐compatible, chip‐scale imaging platform and provides a pathway toward compact, low‐cost, large‐pixel‐count broadband cameras operating across the VIS‐NIR‐MIR spectral regions.

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Publication Details

Journal
Advanced Functional Materials
Published
2026-09-09
DOI
https://doi.org/10.1002/adfm.78267
Primary Topic
2D Materials and Applications
Type
article
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article

Large‐Format Room‐Temperature Visible‐to‐Mid‐Infrared Broadband Imaging Enabled by a Single 2D Active Material

Ruihuan Duan, Qijie Wang, Zheng Liu, Hui Ma et al.
Advanced Functional Materials
2D Materials and Applications
article

Large‐Format Room‐Temperature Visible‐to‐Mid‐Infrared Broadband Imaging Enabled by a Single 2D Active Material

Ruihuan Duan, Qijie Wang, Zheng Liu, Hui Ma, Yuxuan Liu, Fakun Wang, Yue Zhang, Cong Zhang
article en

Abstract

ABSTRACT Broadband imaging across visible, near‐infrared, and mid‐infrared (VIS‐NIR‐MIR) is a long‐standing goal for applications spanning machine vision, autonomous navigation, remote sensing, and biomedical monitoring. However, current approaches typically require multiple single‐band detectors or heterogeneous material stacks to cover different spectral windows, which add substantial optical and fabrication complexity. Here, we report a large‐pixel‐count, room‐temperature VIS‐NIR‐MIR broadband image sensor enabled by a detector‐array vertical photodiode architecture that uses large‐scale two‐dimensional (2D) black phosphorus (BP) films as a single active material. Operating at room temperature under zero bias, the BP film photodiodes exhibit an intrinsically broadband response spanning 532 nm to 6.2 µm, with specific detectivity ranging from 1.36 × 10 7 cm Hz 1/2 W −1 at 6.2 µm to 1.0 × 10 8 cm Hz 1/2 W −1 at 3.7 µm. We further achieve monolithic integration of the 2D BP film photodiodes with a 640 × 512 silicon readout integrated circuit (ROIC), enabling large‐pixel‐count VIS‐NIR‐MIR broadband imaging using a single active material for the first time, to the best of our knowledge. This work establishes a scalable, ROIC‐compatible, chip‐scale imaging platform and provides a pathway toward compact, low‐cost, large‐pixel‐count broadband cameras operating across the VIS‐NIR‐MIR spectral regions.

Advanced Functional Materials
Nanyang Technological University (SG), Singapore Centre for Environmental Life Sciences Engineering (SG), Huazhong University of Science and Technology (CN), Hubei University of Technology (CN), Wuhan Institute of Technology (CN)
Openalex Percentile: Top 23%
2D Materials and Applications
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