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Surface-enhanced Raman spectroscopic identification in fingerprints based on adhesive Au nanofilm

机译:基于胶金纳米膜的指纹表面增强拉曼光谱识别

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The visualization and acquisition of information on substances within fingerprints have attracted considerable interest owing to their practical application in forensic science. There are still some challenges in the transfer and imaging of fingerprints and the extraction of residues. Here, a facile approach was successfully developed for transferring and recovering the pattern of fingerprints, which is based on surface-enhanced Raman spectroscopy (SERS) and an adhesive Au nanofilm (ANF). The reproducibility of SERS effects and the adhesive quality of the ANF enabled the transfer, recovery of the pattern and extraction of chemical residues from living/latent fingerprints. The results demonstrated that the pattern of living fingerprints, including ridges, furrows and sweat pores, was recovered on the basis of SERS mapping of the vibrational band of amino acids from endogenous protein substances. The dye rhodamine 6G (R6G) was employed as a developing agent to enhance the visualization of fingerprints by SERS mapping of the band at 1360?cm ~(?1) . Moreover, exogenous residues, such as cotinine (COT) and methylene blue (MB), were also detected by SERS. Their distribution in fingerprints was also determined, although it was not associated with the pattern of fingerprints. This indicated that the extraction process based on the adhesive ANF could be applied to transfer fingerprints from a crime scene to the laboratory for precise identification via structural information on chemical residues and the pattern image of fingerprints. It is anticipated that the adhesive ANF when combined with an ultrahigh-sensitivity SERS technique could be developed as a promising tool for the visualization of fingerprints and monitoring of trace chemical residues for crime tracking in forensic science.
机译:由于其在法医学中的实际应用,因此可视化和获取有关指纹内物质信息的方法引起了极大的兴趣。指纹的转移和成像以及残留物的提取仍然存在一些挑战。在这里,基于表面增强拉曼光谱(SERS)和金纳米胶粘剂(ANF),成功开发了一种简便的方法来转移和恢复指纹图案。 SERS效果的可再现性和ANF的粘合质量使转移,图案恢复以及从活/潜指纹中提取化学残留物成为可能。结果表明,基于内源蛋白物质氨基酸振动带的SERS映射,可以恢复包括山脊,犁沟和汗水孔在内的活指纹的模式。罗丹明6G(R6G)染料被用作显影剂,通过在1360?cm〜(?1)处的条带的SERS映射来增强指纹的可视化。此外,SERS还检测到外源残基,例如可替宁(COT)和亚甲基蓝(MB)。还确定了它们在指纹中的分布,尽管它与指纹的模式无关。这表明基于粘合剂ANF的提取过程可用于将指纹从犯罪现场转移到实验室,以通过化学残留物的结构信息和指纹图案图像进行精确识别。可以预期,将粘合剂ANF与超高灵敏度SERS技术结合使用时,可作为一种有前途的工具,用于可视化指纹和监测法医科学中用于犯罪追踪的痕量化学残留物。

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