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富含荧光团的天然药粉,用于检测潜在指纹和氰化物。

Fluorophoresrich natural powder from selected medicinal plants for detection latent fingerprints and cyanide.

机构信息

Forensic Division, Department of Integrated Science, Faculty of Science, 26684Khon Kaen University, Khon Kaen, Thailand.

Materials Chemistry Research Center, Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, 26684Khon Kaen University, Khon Kaen, Thailand.

出版信息

Sci Prog. 2023 Jan-Mar;106(1):368504231156217. doi: 10.1177/00368504231156217.

Abstract

Forensic science is currently fast-growing for the development detection of the latent fingerprint. Currently, chemical dust quickly enters the body through touch or inhalation and will be affected by the user. In this research, a study on the comparison of natural powder from four species of medicinal plants () for the detection of latent fingerprints is carried out that has fewer adverse effects on the user's body by using such natural substances instead. In addition, the fluorescence properties of the dust have been found in some natural powder for sample detection and appear on multi-colored surfaces to show that the latent fingerprints are more pronounced than ordinary dust. In this study, medicinal plants have also been applied to detect cyanide, as it has been known that it is hazardous for humans and can be used as a poisonous compound to kill someone. The characteristics of each powder have also been analyzed using naked-eye detection under UV light, Fluorescence spectrophotometer, FIB-SEM, and FTIR. All the powder obtained can then be used for high potential detection of latent fingerprints on the non-porous surface with their specific characteristics and trace amounts of cyanide using turn-on-off fluorescent sensing method.

摘要

法医学目前正在快速发展,以提高潜伏指纹的检测能力。目前,化学粉尘通过触摸或吸入会迅速进入人体,并会对使用者造成影响。在这项研究中,我们研究了四种药用植物的天然粉末()在检测潜伏指纹方面的比较,希望用这些天然物质替代普通的粉尘,减少对使用者身体的不良影响。此外,我们还发现一些天然粉末的尘埃具有荧光特性,可用于样品检测,并在多色表面上显现,表明潜伏指纹比普通粉尘更为明显。在这项研究中,我们还应用药用植物来检测氰化物,因为众所周知,氰化物对人体有害,可作为一种有毒化合物来杀人。我们还使用肉眼检测、荧光分光光度计、FIB-SEM 和 FTIR 分析了每种粉末的特性。所有获得的粉末都可以通过使用开启-关闭荧光传感方法,在无孔表面上对潜伏指纹进行高潜力检测,其具有特定的特性和痕量的氰化物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45fa/10450322/1ce2cf2feaaa/10.1177_00368504231156217-fig1.jpg

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