Lakhtakia Akhlesh, Shaler Robert C, Martín-Palma Raúl J, Motyka Michael A, Pulsifer Drew P
Materials Research Institute and Department of Engineering Science and Mechanics, Pennsylvania State University, University Park, PA 16802, USA.
J Forensic Sci. 2011 May;56(3):612-6. doi: 10.1111/j.1556-4029.2010.01685.x. Epub 2011 Feb 9.
Various vacuum techniques are employed to develop fingermarks on evidentiary items. In this work, a vacuum was used to deposit columnar thin films (CTFs) on untreated, cyanoacrylate-fumed or dusted fingermarks on a limited selection of nonporous surfaces (microscope glass slides and evidence tape). CTF deposition was not attempted on fingermarks deposited on porous surfaces. The fingermarks were placed in a vacuum chamber with the fingermark side facing an evaporating source boat containing either chalcogenide glass or MgF(2). Thermal evaporation of chalcogenide glass or MgF(2) under a 1 μTorr vacuum for 30 min formed dense CTFs on fingermark ridges, capturing the topographical features. The results show that it is possible to capture fingermark topology using CTFs on selected untreated, vacuumed cyanoacrylate-fumed or black powder-dusted nonporous surfaces. Additionally, the results suggested this might be a mechanism to help elucidate the sequence of deposition.
采用了各种真空技术来显现在物证上的指纹。在这项工作中,利用真空在有限种类的无孔表面(显微镜载玻片和物证胶带)上未经处理、经氰基丙烯酸酯熏显或撒粉处理的指纹上沉积柱状薄膜(CTF)。未尝试在多孔表面上沉积的指纹上进行CTF沉积。将指纹置于真空室中,指纹面朝向装有硫系玻璃或MgF₂的蒸发源舟。在1微托真空下对硫系玻璃或MgF₂进行热蒸发30分钟,在指纹纹脊上形成致密的CTF,捕捉其地形特征。结果表明,在选定的未经处理、经真空处理、氰基丙烯酸酯熏显或黑色粉末撒粉处理的无孔表面上使用CTF可以捕捉指纹拓扑结构。此外,结果表明这可能是一种有助于阐明沉积顺序的机制。