Stojanovska Natasha, De Grazia Adrian, Tahtouh Mark, Shimmon Ronald, Reedy Brian
Department of Chemistry and Forensic Science, University of Technology, Sydney, PO Box 123, Broadway, NSW, 2007, Australia.
J Forensic Sci. 2015 May;60(3):619-26. doi: 10.1111/1556-4029.12692. Epub 2014 Dec 23.
In further work investigating the intriguing application of diacetylene copolymers in fingermark detection, methods were developed to control (inhibit or enhance) the diacetylene polymerization reaction in fingermarks treated with a mixture of the monomers 2,4-hexadiyne-1,6-bis-(phenylurethane) (HDDPU) and 2,4-hexadiyne-1,6-bis(p-chlorophenylurethane) (HDDCPU) in acetone solution. These methods included the use of a humidity chamber to reduce the amount of background development while promoting development on the fingermark, subjecting developed fingermarks to freezing temperatures and using a solvent to remove unreacted monomer in order to inhibit the polymerization reaction. Developed fingermarks were enhanced by conventional lighting (white light, filtered light) and fast Raman mapping, which was shown to be advantageous over FTIR imaging. This study also demonstrated the applicability of diacetylene copolymer solutions in the covert detection of fingermarks on difficult surfaces. Furthermore, fingermarks were successfully developed with good ridge detail on pig skin (used as a model for human skin, a notoriously difficult surface on which to develop fingermarks).
在进一步研究双乙炔共聚物在指纹检测中有趣应用的工作中,开发了一些方法来控制(抑制或增强)用丙酮溶液中的单体2,4-己二炔-1,6-双(苯基脲烷)(HDDPU)和2,4-己二炔-1,6-双(对氯苯基脲烷)(HDDCPU)混合物处理过的指纹中的双乙炔聚合反应。这些方法包括使用湿度箱来减少背景显色量,同时促进指纹上的显色,将显影后的指纹置于冷冻温度下,并使用溶剂去除未反应的单体以抑制聚合反应。通过传统照明(白光、滤光)和快速拉曼映射增强了显影后的指纹,结果表明这比傅里叶变换红外成像更具优势。这项研究还证明了双乙炔共聚物溶液在隐蔽检测难处理表面上的指纹方面的适用性。此外,在猪皮(用作人类皮肤的模型,在其表面上显影指纹是出了名的困难)上成功显影出了具有良好纹路细节的指纹。