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采用 ATR-FTIR 成像、拉曼微光谱和 SEM/EDX 的联合应用对汽车分层漆屑的多模态组合分析。

Multi-Modal Compositional Analysis of Layered Paint Chips of Automobiles by the Combined Application of ATR-FTIR Imaging, Raman Microspectrometry, and SEM/EDX.

机构信息

Department of Chemistry, Inha University, Incheon 22212, Korea.

Graduate School of Engineering, Osaka City University, Osaka 558-8585, Japan.

出版信息

Molecules. 2019 Apr 8;24(7):1381. doi: 10.3390/molecules24071381.

Abstract

For the forensic analysis of multi-layered paint chips of hit-and-run cars, detailed compositional analysis, including minor/trace chemical components in the multi-layered paint chips, is crucial for the potential credentials of the run-away car as the number of layers, painting process, and used paints are quite specific to the types of cars, color of cars, and their surface protection depending on the car manufacturer and the year of manufacture, and yet overall characteristics of some paints used by car manufacturers might be quite similar. In the present study, attenuated total reflectance-Fourier transform infrared (ATR-FTIR) imaging, Raman microspectrometry (RMS), and scanning electron microscopy/energy-dispersive X-ray spectrometric (SEM/EDX) techniques were performed in combination for the detailed characterization of three car paint chip samples, which provided complementary and comprehensive information on the multi-layered paint chips. That is, optical microscopy, SEM, and ATR-FTIR imaging techniques provided information on the number of layers, physical heterogeneity of the layers, and layer thicknesses; EDX on the elemental chemical profiles and compositions; ATR-FTIR imaging on the molecular species of polymer resins, such as alkyd, alkyd-melamine, acrylic, epoxy, and butadiene resins, and some inorganics; and RMS on the molecular species of inorganic pigments (TiO₂, ZnO, Fe₃O₄), mineral fillers (kaolinite, talc, pyrophyllite), and inorganic fillers (BaSO₄, Al₂(SO₄)₃, Zn₃(PO₄)₂, CaCO₃). This study demonstrates that the new multi-modal approach has powerful potential to elucidate chemical and physical characteristics of multi-layered car paint chips, which could be useful for determining the potential credentials of run-away cars.

摘要

对于肇事逃逸汽车的多层漆屑的法医分析,详细的成分分析,包括多层漆屑中的微量/痕量化学组分,对于逃逸车辆的潜在线索至关重要,因为层数、涂装工艺和使用的涂料与汽车类型、汽车颜色及其表面保护有关,具体取决于汽车制造商和制造年份,但汽车制造商使用的一些涂料的总体特征可能非常相似。在本研究中,衰减全反射傅里叶变换红外(ATR-FTIR)成像、拉曼微光谱(RMS)和扫描电子显微镜/能量色散 X 射线光谱(SEM/EDX)技术相结合,对三个汽车漆屑样本进行了详细的特征描述,这些技术为多层漆屑提供了互补和全面的信息。也就是说,光学显微镜、SEM 和 ATR-FTIR 成像技术提供了关于层数、层的物理不均匀性和层厚度的信息;EDX 提供了元素化学概况和组成的信息;ATR-FTIR 成像提供了聚合物树脂(如醇酸、醇酸三聚氰胺、丙烯酸、环氧树脂和丁二烯树脂)和一些无机物的分子种类的信息;RMS 提供了无机颜料(TiO₂、ZnO、Fe₃O₄)、矿物填料(高岭土、滑石、叶腊石)和无机填料(BaSO₄、Al₂(SO₄)₃、Zn₃(PO₄)₂、CaCO₃)的分子种类的信息。本研究表明,这种新的多模态方法具有阐明多层汽车漆屑化学和物理特征的强大潜力,这对于确定逃逸车辆的潜在线索可能很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4b7/6479518/e43f020aceff/molecules-24-01381-g001.jpg

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