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使用解吸电喷雾电离质谱法检测和成像可擦除笔中的热致变色墨水化合物。

Detection and imaging of thermochromic ink compounds in erasable pens using desorption electrospray ionization mass spectrometry.

作者信息

Khatami Amin, Prova Shamina S, Bagga Aafreen K, Yan Chi Ting Michelle, Brar Gurnoor, Ifa Demian R

机构信息

Centre for Research in Mass Spectrometry (CRMS), Department of Chemistry, York University, Toronto, Canada.

出版信息

Rapid Commun Mass Spectrom. 2017 Jun 30;31(12):983-990. doi: 10.1002/rcm.7867.

Abstract

RATIONALE

Thermochromic ink pens are widely accessible worldwide and have gained popularity among the general public. These pens are very useful to undo mistakes while writing important documents or exams. They are also, however, misused in committing crimes such as counterfeiting checks or wills. Thus, the forensics community is in need of techniques that will allow these forgeries to be detected rapidly, reliably and conveniently.

METHODS

Thermochromic ink compounds were investigated using Desorption Electrospray Ionization (DESI) coupled with an LTQ mass spectrometer and Thin-Layer Chromatography (TLC). Tandem mass spectrometric analysis was conducted using Electrospray Ionization (ESI) coupled with an Orbitrap LTQ mass spectrometer performing Collision-Induced Dissociation (CID) for identification of ink traces.

RESULTS

Chemical marker ions characteristic of the state of ink (visible or invisible) were identified and mapped in ink traces by the use of DESI-MS imaging. These ions can be employed by forensic experts as fingerprint markers in forged documents. The marker ions were also characterised by conducting tandem mass spectrometry using paper spray in an Orbitrap LTQ mass spectrometer.

CONCLUSIONS

Specific chemical components yielding ions of m/z 400, 405, 615 and 786 were distinguished as only being apparent in the invisible and reappeared state of the ink. The absence of these compounds in the original state of the ink enabled their recognition as useful chemical determinants in detecting forgery. DESI-MSI was thus shown to be a very useful, convenient and reliable technique for detecting forgery in paper documents due to its fast and reproducible mode of analysis, with no sample preparation and minimal damage to the document under investigation. Copyright © 2017 John Wiley & Sons, Ltd.

摘要

原理

热致变色墨水笔在全球范围内广泛可得,并在普通大众中受到欢迎。这些笔在书写重要文件或考试时用于纠正错误非常有用。然而,它们也被滥用于伪造支票或遗嘱等犯罪行为。因此,法医界需要能够快速、可靠且方便地检测这些伪造品的技术。

方法

使用解吸电喷雾电离(DESI)与LTQ质谱仪以及薄层色谱法(TLC)对热致变色墨水化合物进行研究。使用电喷雾电离(ESI)与Orbitrap LTQ质谱仪进行串联质谱分析,通过碰撞诱导解离(CID)来识别墨水痕迹。

结果

通过DESI-MS成像识别并绘制了墨水状态(可见或不可见)特征的化学标记离子在墨水痕迹中的分布。这些离子可被法医专家用作伪造文件中的指纹标记。还通过在Orbitrap LTQ质谱仪中使用纸喷雾进行串联质谱分析对标记离子进行了表征。

结论

产生质荷比为400、405、615和786离子的特定化学成分仅在墨水的不可见和重现状态下才明显。墨水中原始状态下不存在这些化合物,这使得它们能够被识别为检测伪造的有用化学决定因素。因此,DESI-MSI因其快速且可重复的分析模式、无需样品制备以及对所研究文件的最小损坏,被证明是一种用于检测纸质文件伪造的非常有用、方便且可靠的技术。版权所有© 2017约翰威立父子有限公司。

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