PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 23, 2026Advanced Optical Materials0 citations

Fast Binocular Visible‐Infrared Computational Imaging for Palmprint and Vein Detection Using Narrow Bandgap Perovskite Photodetectors

View Full Paper
WLWanjun LiChongqing Normal UniversityBCB. Y. ChenJinan UniversityPZPeng ZhengJinan University

Key Points

  • To develop a high-speed binocular imaging system for noninvasive palmprint and vein recognition using narrow bandgap perovskites.
  • Proposed a binocular imaging system combining visible and near-infrared photodetectors
  • Utilized advanced computational algorithms for imaging
  • Achieved imaging speeds of 2.9 µs and a detection limit of 7.64 nW cm−2
  • Employed both diffuse reflection and projection modes for imaging
  • Achieved successful palmprint and palm-vein recognition in under 1 second
  • Demonstrated high-resolution imaging capabilities
  • Improved contrast and depth imaging in tissue

Abstract

Abstract Noninvasive/contact palm‐vein recognition utilizes near‐infrared (NIR) illumination to highlight subcutaneous venous patterns, enabling deep‐tissue imaging with high resolution and improved contrast, binocular dual‐spectral imaging representing a breakthrough in biometric identification. Narrow bandgap Sn‐Pb perovskites have recently emerged as potential sensing materials that may outperform conventional NIR counterparts. However, the instability, nonuniform large‐scale pixel array fabrication, as well as crosstalk greatly hinders high‐quality imaging. Here, a novel binocular imaging system that combines fast self‐powered visible (VIS)/NIR perovskite photodetectors with advanced computational algorithms is proposed. To date, it features exceptional imaging speed of 2.9 µs, a record‐low detection limit of 7.64 nW cm − 2 . Meanwhile, the NIR photodetectors (PDs) are applicable to convert transmission NIR light to photovoltage. By integrating the anti‐scattering merit of single‐pixel imaging with deep penetration of infrared light in tissue, high‐performance binocular computational imaging in diffuse reflection and projection modes has been achieved for the first time. Furthermore, fast noncontact palmprint and palm‐vein recognition imaging are successfully demonstrated within 1 s. This work offers a promising new direction for perovskite‐based NIR imaging, advancing the development of more reliable and detailed imaging capabilities.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69730f78c8125b09b0d1f377https://doi.org/10.1002/adom.202502214
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Sn‐Based Self‐Powered Ultrafast Perovskite Photodetectors with Highly Crystalline Order for Flexible Imaging Applications2023 · 75 citations
  2. 2Enhancing electron diffusion length in narrow-bandgap perovskites for efficient monolithic perovskite tandem solar cells2019 · 354 citations
  3. 3Exclusive Bus Lane Allocation Considering Multimodal Traffic Equity Based on Bi-Level Programming2023 · 6 citations
  4. 4Low‐Dimensional Inorganic Tin Perovskite Solar Cells Prepared by Templated Growth2021 · 80 citations
  5. 5Monolithic all-perovskite tandem solar cells with 24.8% efficiency exploiting comproportionation to suppress Sn(ii) oxidation in precursor ink2019 · 1,074 citations