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转子增殖促进铱发光体的高亮度聚集诱导发光,实现潜指纹至三级细节的高对比度发光成像。

Rotor proliferation promotes high-brightness AIE of iridium emitter accomplishing high-contrast luminous imaging of latent fingerprints to level 3 details.

作者信息

Di Ling, Jiang Yingnan, Song Qi, Sun Wen, Xing Yang, Yang Zhanxu, Xia Zhengqiang, Zhang Ting, Chen Xuebing

机构信息

School of Petrochemical Engineering, Liaoning Petrochemical University, Fushun 113001, China.

School of Petrochemical Engineering, Liaoning Petrochemical University, Fushun 113001, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 15;325:125145. doi: 10.1016/j.saa.2024.125145. Epub 2024 Sep 14.

DOI:10.1016/j.saa.2024.125145
PMID:39299072
Abstract

Luminous imaging of latent fingerprints (LFPs) necessitates the possession of high-brightness aggregation-state luminescence by developers to ensure sufficient imaging contrast and resolution. A novel strategy involving incremental rotor modification is presented for AIE activation of the iridium developer. The rotor proliferation prominently improves the rotational activity of groups and facilitates high-efficiency RIM, thereby prompting the AIE activation of iridium developer with high luminous efficiency. Subsequently, a prompt, high-contrast, and robust LFP imaging protocol is developed utilizing the high-brightness AIE-active iridium developer. This innovative protocol realizes the luminous imaging and quantification of microscopic features in fingerprint ridges and furrows, including ridge widths, edge morphology of ridges, included angles, pores, and pore pitches with exceptional imaging contrast and refined detail resolution. Moreover, it allows for accurate identification of individual traits across diverse substrates without any pre-/post-processing to LFPs. The high-brightness AIE-active iridium developer provides outstanding aging resistance to developed fingerprints, thereby strongly supporting the acquisition, transfer, and preservation of fingerprint evidence. The luminous imaging protocol of LFPs based on high-brightness AIE exhibits robust adaptability to actual scenes and offers a premium scheme for facilitating forensic investigation.

摘要

潜指纹(LFPs)的发光成像需要显影剂具备高亮度聚集态发光,以确保足够的成像对比度和分辨率。本文提出了一种涉及增量转子修饰的新策略,用于铱显影剂的聚集诱导发光(AIE)激活。转子增殖显著提高了基团的旋转活性,并促进了高效的聚集诱导发光猝灭(RIM),从而促使铱显影剂以高发光效率实现AIE激活。随后,利用高亮度AIE活性铱显影剂开发了一种快速、高对比度且稳健的LFP成像方案。这种创新方案实现了指纹纹路和沟槽中微观特征的发光成像和量化,包括纹路宽度、纹路边缘形态、夹角、孔隙和孔隙间距,具有出色的成像对比度和精细的细节分辨率。此外,它无需对LFP进行任何预处理/后处理,就能准确识别不同基材上的个体特征。高亮度AIE活性铱显影剂为已显影的指纹提供了出色的抗老化性能,从而有力地支持了指纹证据的采集、转移和保存。基于高亮度AIE的LFP发光成像方案对实际场景具有强大的适应性,为促进法医调查提供了优质方案。

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