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Interfacial Separation-Enabled All-Dry Approach for Simultaneous Visualization, Transfer, and Enhanced Raman Analysis of Latent Fingerprints

机译:支持界面分离的全干方法,用于同时可视化,转移和增强潜在指纹的分析

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摘要

It is of essential importance to visualize latent fingerprint (LFP) and analyze the compounds therein. For this purpose, various approaches have been developed but suffer from low imaging and/or detection efficiency. Most importantly, most of them require a necessary in-solution process and thus are not applicable to LFPs on bulky or water sensitive substrates. In this work, we report an all-dry method to achieve simultaneous visualization and transfer of LFP and enhanced Raman analysis of multiple species therein. In this innovative approach, polydopamine (PDA) film-coated poly(dimethylsiloxane) (PDMS) flake with dense plasmonic silver nanoparticles (AgNPs@PDA@PDMS) was applied to cover the substrate carrying LFP. After gentle separation, the AgNPs@PDA film was transferred from PDMS to the LFP ridges to visualize a positive LFP pattern on the substrate, leaving behind a complementary (negative) LFP pattern on the PDMS flake. The compounds in the LFP were further analyzed via the AgNP-enhanced Raman technique. This approach enables high-contrast and full-feature visualization and transfer of LFP on arbitrary nonporous substrates and facilitates sensitive Raman analysis of multiple species in the sweat and thus promises great potential for practical applications.
机译:可视化潜在指纹(LFP)并分析其中的化合物是至关重要的。为此目的,已经开发了各种方法,但遭受了低的成像和/或检测效率。最重要的是,它们中的大多数需要必要的溶液过程,因此不适用于笨重或水敏感基材的LFP。在这项工作中,我们报告了一种完全干燥的方法,实现了LFP的同时可视化和转移,以及其中多种物种的增强拉曼分析。在这种创新方法中,施加具有致密等离子体纳米颗粒(AgNPS @ PDA @ PDMS)的多碳邻胺(PDA)涂膜聚(二甲基硅氧烷)(PDMS)薄片以覆盖携带LFP的基材。轻轻分离后,将AgNPS @ PDA膜从PDMS转移到LFP脊,以在基板上可视化阳性LFP图案,留下PDMS薄片上的互补(负)LFP图案。通过AgNP增强的拉曼技术进一步分析LFP中的化合物。该方法使得能够在任意孔孔基板上进行高对比度和全功能可视化和转移LFP,并在汗水中促进对多种物种的敏感拉曼分析,因此对实际应用有很大的潜力。

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