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精神活性苯丙胺与作为指纹试剂的1,2-茚二酮和1,8-二氮杂芴-9-酮相互作用的计算研究。

Computational study of the interaction of the psychoactive amphetamine with 1,2-indanedione and 1,8-diazafluoren-9-one as fingerprinting reagents.

作者信息

Bhikharee Divya, Rhyman Lydia, Ramasami Ponnadurai

机构信息

Computational Chemistry Group, Department of Chemistry, Faculty of Science, University of Mauritius Réduit 80837 Mauritius

Department of Chemistry, University of South Africa Private Bag X6 Florida 1710 South Africa.

出版信息

RSC Adv. 2023 Jan 30;13(6):4077-4088. doi: 10.1039/d2ra07044h. eCollection 2023 Jan 24.

Abstract

In this study, we used computational methods to investigate the interaction of amphetamine (AMP) with 1,2-indanedione (IND) and 1,8-diazafluoren-9-one (DFO) so as to understand whether AMP can be detected in latent fingerprints using either of these reagents. The results show that the binding energies of AMP with IND and DFO were enhanced by the presence of amino acid from -9.29 to -12.35 kcal mol and -7.98 to -10.65 kcal mol, respectively. The physical origins of these interactions could be better understood by symmetry-adapted perturbation theory. The excited state properties of the binding structures with IND demonstrate distinguishable absorption peaks in the UV-vis spectra but zero fluorescence. Furthermore, the UV-vis spectra of the possible reaction products between AMP and the reagents reveal absorption peaks in the visible spectrum. Therefore, we could predict that reaction of AMP with IND would be observable by a reddish colour while with DFO, a colour change to violet is expected. To conclude, the reagents IND and DFO may be used to detect AMP by UV-vis spectroscopy and if their reactions are allowed, the reagents may then act as a potentially rapid, affordable and easy colorimetric test for AMP in latent fingerprints without destruction of the fingerprint sample.

摘要

在本研究中,我们使用计算方法研究了苯丙胺(AMP)与1,2 - 茚二酮(IND)和1,8 - 二氮杂芴 - 9 - 酮(DFO)的相互作用,以了解是否可以使用这些试剂中的任何一种在潜在指纹中检测到AMP。结果表明,由于氨基酸的存在,AMP与IND和DFO的结合能分别从-9.29 kcal mol增强到-12.35 kcal mol和从-7.98 kcal mol增强到-10.65 kcal mol。通过对称适应微扰理论可以更好地理解这些相互作用的物理起源。与IND的结合结构的激发态性质在紫外可见光谱中显示出可区分的吸收峰,但荧光为零。此外,AMP与试剂之间可能的反应产物的紫外可见光谱在可见光谱中显示出吸收峰。因此,我们可以预测AMP与IND的反应将通过微红色观察到,而与DFO反应则预期会变为紫色。总之,试剂IND和DFO可用于通过紫外可见光谱检测AMP,如果允许它们发生反应,那么这些试剂可作为一种潜在的快速、经济且易于操作的比色法来检测潜在指纹中的AMP,而不会破坏指纹样本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b10b/9890558/6fd4040c435c/d2ra07044h-f1.jpg

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