• Laser & Optoelectronics Progress
  • Vol. 62, Issue 2, 0211002 (2025)
Lingjie Guo1,*, Shuhui Gao1, Shuai Liang1, Yufan Zhang1..., Taihe Li1 and Lianxi Li2|Show fewer author(s)
Author Affiliations
  • 1School of Investigation, People's Public Security University of China, Beijing 100038, China
  • 2Beijing Brave Technology Co., Ltd., Beijing 100123, China
  • show less
    DOI: 10.3788/LOP240634 Cite this Article Set citation alerts
    Lingjie Guo, Shuhui Gao, Shuai Liang, Yufan Zhang, Taihe Li, Lianxi Li. Research on Time-Resolved in situ Aggregation-Induced Activation for Latent Fingerprint Imaging[J]. Laser & Optoelectronics Progress, 2025, 62(2): 0211002 Copy Citation Text show less
    References

    [1] Wang M, Ju J S, Zhu Z X et al. Recent progress in nanomaterial-based fluorescent development of latent fingerprints[J]. Scientia Sinica (Chimica), 49, 1425-1441(2019).

    [2] D’Elia V, Materazzi S, Iuliano G et al. Evaluation and comparison of 1,2-indanedione and 1,8-diazafluoren-9-one solutions for the enhancement of latent fingerprints on porous surfaces[J]. Forensic Science International, 254, 205-214(2015).

    [3] Liu K K, Luo Y P. Application of spectral imaging technology in field of forensic science[J]. Laser & Optoelectronics Progress, 61, 0400005(2024).

    [4] Chen Y, Zhang C J, Gao D M et al. Development of visualization of latent fingerprints[J]. Chinese Journal of Applied Chemistry, 28, 1099-1107(2011).

    [5] Fan Z N, Zhang C, Ma R L et al. Dye-soaked cotton pads for latent blood fingerprint development[J]. SN Applied Sciences, 2, 1879(2020).

    [6] Luo Y P. The application and prospect of cyanoacrylate vacuum fuming of latent prints[J]. Forensic Science and Technology, 37-38(2003).

    [7] Jiang Z, Kong Z Y, Qiao R J et al. Preparation of amphiphilic thienyl carboxylic acid derivatives and application for latent fingerprint detection[J]. Fine Chemicals, 41, 1925-1932(2024).

    [8] Luo J, Xie Z, Lam J W et al. Aggregation-induced emission of 1-methyl-1,2,3,4,5-pentaphenylsilole[J]. Chemical Communications, 1740-1741(2001).

    [9] Li Y, Xu L R, Su B. Aggregation induced emission for the recognition of latent fingerprints[J]. Chemical Communications, 48, 4109-4111(2012).

    [10] Guo L J, Gao S H. Study on the impact of aggregation-induced emission on latent fingerprint revelation based on surface energy differences[J]. Laser & Optoelectronics Progress, 61, 1530004(2024).

    [11] Liang S, Gao S H, Guo L J. Development research of latent fingerprints based on aggregation-induced emission technique[J]. Laser & Optoelectronics Progress, 61, 1530005(2024).

    [12] Wang X, Wang M, Ma Y et al. The feasibility study on quantitative analysis of sweat latent fingerprints[J]. Chemical Research and Application, 33, 2217-2221(2021).

    [13] Sears V G, Bleay S M, Bandey H L et al. A methodology for finger mark research[J]. Science & Justice, 52, 145-160(2012).

    [14] Hanna T, Chadwick S, Moret S. Fingermark quality assessment, a transversal study of subjective quality scales[J]. Forensic Science International, 350, 111783(2023).

    [15] Zhang H, Gao S H. Research on latent fingermarks extraction and visual analysis by short-wave ultraviolet light distribution inspection technique[J]. Applied Laser, 44, 129-140(2024).

    [16] Willis S, Ligertwood A, Molina J J L et al. ENFSI guideline for evaluative reporting in forensic science[EB/OL]. https://enfsi.eu/wp-content/uploads/2016/09/m1_guideline.pdf

    Lingjie Guo, Shuhui Gao, Shuai Liang, Yufan Zhang, Taihe Li, Lianxi Li. Research on Time-Resolved in situ Aggregation-Induced Activation for Latent Fingerprint Imaging[J]. Laser & Optoelectronics Progress, 2025, 62(2): 0211002
    Download Citation