Research Article
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Year 2025, Volume: 2 Issue: 2, 54 - 60, 31.07.2025

Abstract

References

  • Hermens JGH, Gemert RV, Fringa BL. A coating from nature, Science Advances. 2020, 6, 51.
  • Kirkbride P. Paint and coatings examination. Forensic Chemistry Fundamentals and Applications. Editor: J.A. Siegel. Oxford, UK, 2016, 116-182.
  • Kaur S, Chauhan H, Kumar SS and Sunil A. Analysis of Unusual Trace Evidence- Paint & Glitter. Journal of Forensic Research. 2024, 15, 5.
  • Rendle DF. Advances in chemistry applied to forensic science. Chemical Society Reviews. 2005, 34, 1021-1030.
  • Brettell TA, Butler JM, Saferstein R. Forensic Science. Analytical Chemistry. 2005, 77, 3839-3860.
  • Malek MA, Nakazawa T, Kang HW, Tsuji K, Ro CU. Multi-modal Compositional Analysis of Layered Paint Chips of Automobiles by the Combined Application of ATR-FTIR Imaging, Raman Microspectrometry, and SEM/EDX. Molecules. 2019, 24(7):1381.
  • Karakaş F, Çelik MS. Stabilization mechanism of main paint pigments. Progress in Organic Coatings, 2018, 123, 292-298.
  • Koruyucu A. The Usage of Pigments In Textile Industry and Investigation of Their Effects on Human Health. İstanbul Commerce University Journal of Science. 2021, 20, (39) 146-161.
  • Suzuki, EM., Ryland, SG. Analysis of paint evidence. Forensic Chemistry Handbook. Editor: L. Kobilinsky. New Jersey. USA, 2012, 131-224.
  • Kumar, A. Exchange of paint in hit-run collisions and ıts significance as forensic evidence. Journal of Forensic Sciences. 2018, 8(1).
  • Maric, M, Bronswijk W, Lewis SW, Pitts K. Synchrotron FT-IR characterisation of automotive primer surface paint coatings for forensic purposes. Talanta 2014, 118, 156-161.
  • Thoonen, G, Nys, B, Haeghen, YV, Roy, GD, Scheunders P. Automatic forensic analysis of automotive paints using optical microscopy. Forensic Science İnternational 2016, 259, 210-220.
  • Hodgins T, Ho A, Sandercock M. Identification of Modern Automotive Paint Systems using Paint Data Query (PDQ): A Collaborative Study. Journal of the American Society of Trace Evidence Examiners. 2015, 6,3, 46-63.
  • Edinburgh Instruments. Forensic paint analysis using Raman microscopy. Retrieved from https://www.edinst.com/resource/ forensic-paint-analysis-raman-microscopy/. 2024.
  • Duarte JM, Sales NGS, Sousa MH, Bridge C, Maric M, Gomes JA. Automotive paint analysis: How far has science advanced in the last ten years? TrAC Trends in Analytical Chemistry. 2020, 132, 116061.
  • Huang L, Beauchemin D. Forensic analysis of automotive paint chips for the vehicle manufacturer, color, and year of production using electrothermal vaporization coupled to inductively coupled plasma optical emission spectrometry. Journal of Analytical Atomic Spectrometry. 2017, 32(8).
  • Büken B, Üner B, Çetinkaya Ü, Çağdır AS, Kırangil ŞB. Scanning electron microscopy (SEM) applications in forensic medicine. Forensic Medicine Bulletin. 2001, 6, 1, 23-31.
  • Zięba-Palus, J. Examination of the variation of chemical composition and structure of paint within a car body by FTIR and Raman spectroscopies. Journal of Molecular Structure 2020, 1219, 128558.
  • Verma, P, Kaur, N, Soni, P. Forensic evaluation and comparison of Indian automobile paint chips using FTIR. Materials Today: Proceedings 2020, 33, 1727–1732.
  • Özkınalı, S, Kocaokutgen, H. Synthesis, spectral characterization and thermal behaviors of some new p-tert-butylcalix[4]arene and calix[4]arene-esters containing acryloyl groups. Journal of Molecular Structure 2013, 1031, 70–78.
  • Özkınalı, S. Spectroscopic, and thermal properties of newly mixed azocalix[4]arene ester derivatives. Dyes and Pigments 2014, 107, 81–89.
  • Kochanowski, BK, Morgan, SL. Forensıc discrimination of automotive paint samples using pyrolysis-gas chromatographymass spectrometry with multivariate statistics. Journal of Chromatographic Science, 2000, 38(3):100-8.
  • McIntee, EM. Forensic analysis of automobile paints by atomic and molecular spectroscopic methods and statical data analyses. Degree of Master of Science in the Department of Chemistry in the College of Sciences at the University of Central Florida Orlando, 2002, Florida.
  • Zieba-Palus, J, Koscielniak P. Comparative analysis of car paint traces in terms of color by VIS micro spectrometry for forensic needs. Analytical Letters. 2010, 43(3), 436-445.
  • Skenderovska, M, Sukarova BM, Andreeva, L. Application of mıcro-Raman and FT-IR spectroscopy in forensic analıysıs of automotive topcoats in the republıc of Macedonia. Macedonian Journal of Chemistry and Chemical Engineering. 2008, 27,1.
  • Gelder, JD, Vandenabeele P, Govaert F, Moens L. Forensıc analysis of automotive paints by Raman spectroscopy. Journal of Raman Spectroscopy, 2005, 36, 1059-1067.
  • Verma P, Kaur M, Kaur N. Forensic analysis of automobile paint of Indian company. Int J Forensic Med Toxicol Sci 2019;4(3):74-81.

EXAMINATION AND EVALUATION OF VEHICLE TRACE EVIDENCE IN FORENSIC CASES

Year 2025, Volume: 2 Issue: 2, 54 - 60, 31.07.2025

Abstract

Vehicle paint chips found at the crime scene are commonly used evidence in forensic cases. Paint samples are transferred from vehicle to vehicle/victim in theft or hit-and-run cases. In this study, paint samples of five different vehicles obtained from the auto industry were pulverized and analyzed using FT-IR Spectrometry and SEM/EDX methods. As a result of the analysis, it was observed that the vehicles differ from each other according to brand, model and production year. When the paint samples of 5 different vehicles were examined, it was determined that the molecular structures of vehicles with different colors, brands, models and production years were different from each other. It has been determined that the microscopic images and FT-IR bands of two red vehicle paints that appear to be the same color are different. A paint database can be created by using paint analysis, which is one of the trace evidence frequently encountered in forensic cases.

Ethical Statement

There is no ethical situation

References

  • Hermens JGH, Gemert RV, Fringa BL. A coating from nature, Science Advances. 2020, 6, 51.
  • Kirkbride P. Paint and coatings examination. Forensic Chemistry Fundamentals and Applications. Editor: J.A. Siegel. Oxford, UK, 2016, 116-182.
  • Kaur S, Chauhan H, Kumar SS and Sunil A. Analysis of Unusual Trace Evidence- Paint & Glitter. Journal of Forensic Research. 2024, 15, 5.
  • Rendle DF. Advances in chemistry applied to forensic science. Chemical Society Reviews. 2005, 34, 1021-1030.
  • Brettell TA, Butler JM, Saferstein R. Forensic Science. Analytical Chemistry. 2005, 77, 3839-3860.
  • Malek MA, Nakazawa T, Kang HW, Tsuji K, Ro CU. Multi-modal Compositional Analysis of Layered Paint Chips of Automobiles by the Combined Application of ATR-FTIR Imaging, Raman Microspectrometry, and SEM/EDX. Molecules. 2019, 24(7):1381.
  • Karakaş F, Çelik MS. Stabilization mechanism of main paint pigments. Progress in Organic Coatings, 2018, 123, 292-298.
  • Koruyucu A. The Usage of Pigments In Textile Industry and Investigation of Their Effects on Human Health. İstanbul Commerce University Journal of Science. 2021, 20, (39) 146-161.
  • Suzuki, EM., Ryland, SG. Analysis of paint evidence. Forensic Chemistry Handbook. Editor: L. Kobilinsky. New Jersey. USA, 2012, 131-224.
  • Kumar, A. Exchange of paint in hit-run collisions and ıts significance as forensic evidence. Journal of Forensic Sciences. 2018, 8(1).
  • Maric, M, Bronswijk W, Lewis SW, Pitts K. Synchrotron FT-IR characterisation of automotive primer surface paint coatings for forensic purposes. Talanta 2014, 118, 156-161.
  • Thoonen, G, Nys, B, Haeghen, YV, Roy, GD, Scheunders P. Automatic forensic analysis of automotive paints using optical microscopy. Forensic Science İnternational 2016, 259, 210-220.
  • Hodgins T, Ho A, Sandercock M. Identification of Modern Automotive Paint Systems using Paint Data Query (PDQ): A Collaborative Study. Journal of the American Society of Trace Evidence Examiners. 2015, 6,3, 46-63.
  • Edinburgh Instruments. Forensic paint analysis using Raman microscopy. Retrieved from https://www.edinst.com/resource/ forensic-paint-analysis-raman-microscopy/. 2024.
  • Duarte JM, Sales NGS, Sousa MH, Bridge C, Maric M, Gomes JA. Automotive paint analysis: How far has science advanced in the last ten years? TrAC Trends in Analytical Chemistry. 2020, 132, 116061.
  • Huang L, Beauchemin D. Forensic analysis of automotive paint chips for the vehicle manufacturer, color, and year of production using electrothermal vaporization coupled to inductively coupled plasma optical emission spectrometry. Journal of Analytical Atomic Spectrometry. 2017, 32(8).
  • Büken B, Üner B, Çetinkaya Ü, Çağdır AS, Kırangil ŞB. Scanning electron microscopy (SEM) applications in forensic medicine. Forensic Medicine Bulletin. 2001, 6, 1, 23-31.
  • Zięba-Palus, J. Examination of the variation of chemical composition and structure of paint within a car body by FTIR and Raman spectroscopies. Journal of Molecular Structure 2020, 1219, 128558.
  • Verma, P, Kaur, N, Soni, P. Forensic evaluation and comparison of Indian automobile paint chips using FTIR. Materials Today: Proceedings 2020, 33, 1727–1732.
  • Özkınalı, S, Kocaokutgen, H. Synthesis, spectral characterization and thermal behaviors of some new p-tert-butylcalix[4]arene and calix[4]arene-esters containing acryloyl groups. Journal of Molecular Structure 2013, 1031, 70–78.
  • Özkınalı, S. Spectroscopic, and thermal properties of newly mixed azocalix[4]arene ester derivatives. Dyes and Pigments 2014, 107, 81–89.
  • Kochanowski, BK, Morgan, SL. Forensıc discrimination of automotive paint samples using pyrolysis-gas chromatographymass spectrometry with multivariate statistics. Journal of Chromatographic Science, 2000, 38(3):100-8.
  • McIntee, EM. Forensic analysis of automobile paints by atomic and molecular spectroscopic methods and statical data analyses. Degree of Master of Science in the Department of Chemistry in the College of Sciences at the University of Central Florida Orlando, 2002, Florida.
  • Zieba-Palus, J, Koscielniak P. Comparative analysis of car paint traces in terms of color by VIS micro spectrometry for forensic needs. Analytical Letters. 2010, 43(3), 436-445.
  • Skenderovska, M, Sukarova BM, Andreeva, L. Application of mıcro-Raman and FT-IR spectroscopy in forensic analıysıs of automotive topcoats in the republıc of Macedonia. Macedonian Journal of Chemistry and Chemical Engineering. 2008, 27,1.
  • Gelder, JD, Vandenabeele P, Govaert F, Moens L. Forensıc analysis of automotive paints by Raman spectroscopy. Journal of Raman Spectroscopy, 2005, 36, 1059-1067.
  • Verma P, Kaur M, Kaur N. Forensic analysis of automobile paint of Indian company. Int J Forensic Med Toxicol Sci 2019;4(3):74-81.
There are 27 citations in total.

Details

Primary Language English
Subjects Analytical Chemistry (Other)
Journal Section Research Article
Authors

Züleyha Katrancı Kaynak 0000-0001-8942-0164

Ebru Gökmeşe 0000-0002-5807-3494

Faruk Gokmeşe 0000-0002-0275-3941

Publication Date July 31, 2025
Submission Date May 30, 2025
Acceptance Date July 10, 2025
Published in Issue Year 2025 Volume: 2 Issue: 2

Cite

Vancouver Katrancı Kaynak Z, Gökmeşe E, Gokmeşe F. EXAMINATION AND EVALUATION OF VEHICLE TRACE EVIDENCE IN FORENSIC CASES. HJS. 2025;2(2):54-60.