Department of Chemistry, Hankuk University of Foreign Studies, Yongin 17035, Republic of Korea.
Department of Chemistry, Dongguk University, Seoul 04620, Republic of Korea.
J Am Soc Mass Spectrom. 2021 Jan 6;32(1):315-321. doi: 10.1021/jasms.0c00333. Epub 2020 Nov 11.
Nanospray desorption electrospray ionization (nano-DESI) has been utilized in direct sampling mass spectrometry (MS) that requires highly spatially resolved sampling with minimal sample destruction. In this study, we explored the applicability of nano-DESI MS for the forensic chemical analysis of ink directly from handwriting on paper. Nano-DESI readily ionizes dyes, including the polyanionic ones, with minimal fragmentation and produces chemical fingerprints of ballpoint pens directly from a paper surface. Further, we specifically focused on how the potential of nano-DESI that changes the mass spectral profiles over time could reflect the differential distribution of analytes in a vertical direction because mildly extracted analytes are immediately transferred and analyzed in real time. To test this, we wrote the character "X" with various combinations of two different pens and analyzed the crosspoints by nano-DESI MS. As a result, the time-course changes in the chemical fingerprints of the ink, which were consistent with the order of the pen strokes, were successfully obtained by nano-DESI MS in most cases. After confirming the capability of the depth-dependent analysis of nano-DESI MS, we analyzed a simulated forgery in which the original and forged writings were made before and after affixing a seal and clearly distinguished the two portions based on the time-dependent changes in the profile of the ink compound.
纳米喷雾解吸电喷雾电离(nano-DESI)已被用于直接采样质谱(MS),该方法需要具有最小样品破坏的高度空间分辨采样。在这项研究中,我们探索了 nano-DESI MS 在手写在纸张上的墨水的法医化学分析中的适用性。nano-DESI 可轻易地使染料离子化,包括多阴离子染料,几乎没有碎片化,并直接从纸张表面产生圆珠笔的化学指纹。此外,我们特别关注 nano-DESI 的潜力如何随着时间的推移改变质谱图,从而反映分析物在垂直方向上的差异分布,因为温和提取的分析物会立即转移并实时进行分析。为此,我们用两种不同的笔以各种组合书写了字符“X”,并通过 nano-DESI MS 分析了交叉点。结果,在大多数情况下,nano-DESI MS 成功地获得了与笔锋顺序一致的墨水化学指纹的时间过程变化。在确认 nano-DESI MS 的深度依赖分析能力后,我们分析了一个模拟伪造品,其中原始和伪造的书写分别在盖章前后进行,并根据墨水化合物谱图的时间依赖性变化清楚地区分了两部分。