Departamento de Química, Instituto de Ciências Exatas, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil.
Instituto Nacional de Ciência e Tecnologia em Bioanalítica, Campinas, SP, Brazil.
J Am Soc Mass Spectrom. 2017 Sep;28(9):1965-1976. doi: 10.1007/s13361-017-1686-z. Epub 2017 May 5.
This article describes the use of paper spray mass spectrometry (PS-MS) for the direct analysis of black ink writings made with ballpoint pens. The novel approach was developed in a forensic context by first performing the classification of commercially available ballpoint pens according to their brands. Six of the most commonly worldwide utilized brands (Bic, Paper Mate, Faber Castell, Pentel, Compactor, and Pilot) were differentiated according to their characteristic chemical patterns obtained by PS-MS. MS on the negative ion mode at a mass range of m/z 100-1000 allowed prompt discrimination just by visual inspection. On the other hand, the concept of relative ion intensity (RII) and the analysis at other mass ranges were necessary for the differentiation using the positive ion mode. PS-MS combined with partial least squares (PLS) was utilized to monitor changes on the ink chemical composition after light exposure (artificial aging studies). The PLS model was optimized by variable selection, which allowed the identification of the most influencing ions on the degradation process. The feasibility of the method on forensic investigations was also demonstrated in three different applications: (1) analysis of overlapped fresh ink lines, (2) analysis of old inks from archived documents, and (3) detection of alterations (simulated forgeries) performed on archived documents. Graphical Abstract ᅟ.
本文描述了纸喷雾质谱(PS-MS)在直读分析圆珠笔黑色墨水字迹中的应用。该新方法是在法庭环境下开发的,首先根据品牌对市售圆珠笔进行分类。根据 PS-MS 获得的特征化学图谱,对六种最常用的圆珠笔品牌(Bic、Paper Mate、Faber Castell、Pentel、Compactor 和 Pilot)进行了区分。在负离子模式下,质量范围为 m/z 100-1000 时,只需通过目视检查即可快速区分。另一方面,需要采用正离子模式,通过相对离子强度(RII)和其他质量范围的分析进行区分。将 PS-MS 与偏最小二乘法(PLS)结合使用,以监测暴露在光线下(人工老化研究)后墨水化学成分的变化。通过变量选择对 PLS 模型进行了优化,从而可以识别对降解过程影响最大的离子。该方法在三种不同应用中的法庭调查可行性也得到了证明:(1)分析重叠的新墨迹线,(2)分析存档文件中的旧墨迹,以及(3)检测存档文件上的更改(模拟伪造)。图摘要。