Faculty of Mathematics, Physics and Informatics, University of Gdansk, Gdańsk, Poland.
Faculty of Law and Administration, University of Gdansk, Gdańsk, Poland.
J Forensic Sci. 2022 Jul;67(4):1468-1475. doi: 10.1111/1556-4029.15039. Epub 2022 Mar 28.
Friction ridge analysis would not have been one of the most recognized branches of forensics without molecular spectroscopy. The phenomenon of fluorescence is used on daily basis to develop latent fingerprints and to enhance those that are visible. The idea behind the research was to discover selected spectroscopic properties of 1,8-diazafluoren-9-one (DFO) in various environments. This fluorescent compound has been routinely used for decades to develop latent fingerprints due to its numerous advantages, but to this day, it has not been well-understood. Analysis of absorption, fluorescence, and excitation spectra of DFO in ethanol at high dye concentration allowed identification of aggregates in the excited state. A significant influence of the dye concentration on the fluorescence spectra and on the fluorescence excitation spectra was found. In particular, dye-host aggregation was found to be much stronger in a polar solvent. DFO aggregates are strongly fluorescent in ethanol, as can be seen from the steady-state emission spectra. The impact of excitation wavelength on the effect of fingerprint detection is presented. A new reaction medium has been proposed, ethanol, which is nontoxic in relation to the currently used one, methanol. The existence in this medium of DFO aggregates in the excited state, which significantly influences the identification of amino acids present in fingerprint traces, was observed, emitting in a wide spectral range (green light).
如果没有分子光谱学,摩擦嵴分析就不会成为最受认可的法医学分支之一。荧光现象被用于日常开发潜在指纹和增强可见指纹。这项研究的背后的想法是发现 1,8-二氮杂芴-9-酮(DFO)在不同环境中的特定光谱特性。由于其众多优点,这种荧光化合物已被常规用于开发潜在指纹多年,但直到今天,它仍然没有得到很好的理解。在高染料浓度的乙醇中分析 DFO 的吸收、荧光和激发光谱,能够识别激发态中的聚集体。发现染料浓度对荧光光谱和荧光激发光谱有显著影响。特别是,在极性溶剂中,发现染料-主体聚集更强。DFO 聚集体在乙醇中具有很强的荧光性,这可以从稳态发射光谱中看出。本文还介绍了激发波长对指纹检测效果的影响。提出了一种新的反应介质,即乙醇,与目前使用的甲醇相比,它是无毒的。在这种介质中观察到 DFO 聚集体在激发态下的存在,这显著影响了对指纹痕迹中存在的氨基酸的识别,其发射光谱范围很宽(绿光)。