利用跟踪软件光谱分析利用大豆皮废弃物发光碳纳米点进行指纹识别

W. Dwandaru, Abdul Rosyid Hidayatullah, Eka Sentia Ayu Listari, D. Sl
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引用次数: 0

摘要

可见指纹(FP)在法医鉴定中发挥着至关重要的作用,发光碳纳米点(C-Dots)在提高其可见性方面显示出了前景。然而,用于有效涂层的C点的最佳浓度在很大程度上仍未被探索。本研究旨在确定用于FPs鉴定的理想C-Dots浓度。分析了两名受试者L和P的指纹图谱,分别在200 mm-250 mm和100 mm-150 mm处显示强度峰值。使用光学显微镜和Tracker软件光谱分析来观察FP图案。C-Dots样品的浓度变化为(%W/V)40%、43.4%和47.6%。C-Dots的分光光度计紫外-可见(UV-Vis)测试显示在270nm和330nm波长处有吸收峰。光致发光测试表明,C点具有青色发光。X射线衍射(XRD)测试表明C-Dots是无定形的。光谱仪傅立叶变换红外光谱(FTIR)测试表明存在C=C官能团。5000倍放大的扫描电子显微镜(SEM)图像显示了模仿皱折纸张的C-Dots的表面形态。使用Tracker软件,成功地区分了FP,当使用43.4%的C-Dots浓度时,观察到最清晰的视觉FP。因此,用于FP识别的C-Dot的最佳浓度为43.4%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of Luminescent Carbon Nanodots from Soybean Husk Wastes for Fingerprint Identification using Tracker Software Spectrum Analysis
Visible fingerprints (FPs) play a crucial role in forensic identification, and luminescent carbon nanodots (C-Dots) have shown promise in enhancing their visibility. However, the optimal concentration of C-Dots for effective coating remains largely unexplored. This research aimed to determine the ideal C-Dots concentration for FPs identification. The fingerprint (FP) patterns of two subjects, L and P, were analyzed, revealing intensity peaks in 200 mm - 250 mm and 100 mm - 150 mm, respectively. The FP patterns were observed using a light microscope and Tracker software spectral analysis. The C-Dots samples were produced with variation in concentrations of (%W/V) 40%, 43.4%, and 47.6%. The spectrophotometer ultraviolet-visible (UV-Vis) test of the C-Dots showed absorption peaks at 270 nm and 330 nm wavelengths. The photoluminescence test indicated that the C-Dots have cyan luminescence. The X-ray diffraction (XRD) test showed that the C-Dots were amorphous. The spectrometer Fourier transform infrared (FTIR) test showed the presence of C = C functional groups. The scanning electron microscope (SEM) images with 5000x magnification showed the surface morphology of the C-Dots mimicking crumpled papers. Using Tracker software, FPs were successfully differentiated, with the clearest visual FPs observed when using a C-Dots concentration of 43.4%. Thus, the optimal concentration of C-Dots for FP identification was 43.4%. 
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