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用于合成聚合物和添加剂表征的新质谱概念。

New mass spectrometry concepts for characterization of synthetic polymers and additives.

作者信息

Inutan Ellen D, Meher Anil K, Karki Santosh, Fischer Joshua L, Imperial Lorelie F, Foley Casey D, Jarois Dean R, El-Baba Tarick J, Lutomski Corinne A, Trimpin Sarah

机构信息

Mindanao State University-Iligan Institute of Technology, Iligan City, Philippines.

Department of Chemistry, Wayne State University, Detroit, MI, USA.

出版信息

Rapid Commun Mass Spectrom. 2020 Aug;34 Suppl 2:e8768. doi: 10.1002/rcm.8768. Epub 2020 Aug 3.

Abstract

RATIONALE

New ionization processes have been developed for biological mass spectrometry (MS) in which the matrix lifts the nonvolatile analyte into the gas phase as ions without any additional energy input. We rationalized that additional fundamental knowledge is needed to assess analytical utility for the field of synthetic polymers and additives.

METHODS

Different mass spectrometers (Thermo Orbitrap (Q-)Exactive (Focus); Waters SYNAPT G2(S)) were employed. The formation of multiply charged polymer ions upon exposure of the matrix/analyte(/salt) sample to sub-atmospheric pressure directly from the solid state and surfaces facilitates the use of advanced mass spectrometers for detection of polymeric materials including consumer products (e.g., gum).

RESULTS

Astonishingly, using nothing more than a small molecule matrix compound (e.g., 2-methyl-2-nitropropane-1,3-diol or 3-nitrobenzonitrile) and a salt (e.g., mono- or divalent cation(s)), such samples upon exposure to sub-atmospheric pressure transfer nonvolatile polymers and nonvolatile salts into the gas phase as multiply charged ions. These successes contradict the conventional understanding of ionization in MS, because can nonvolatile polymers be lifted in the gas phase as ions not only by as little as a volatile matrix but also by the salt required for ionizing the analyte through noncovalent metal cation adduction(s). Prototype vacuum matrix-assisted ionization (vMAI) and automated sources using a contactless approach are demonstrated for direct analyses of synthetic polymers and plasticizers, minimizing the risk of contamination using direct sample introduction into the mass spectrometer vacuum.

CONCLUSIONS

Direct ionization methods from surfaces without the need of high voltage, a laser, or even applied heat are demonstrated for characterization of detailed materials using (ultra)high-resolution and accurate mass measurements enabled by the multiply charged ions extending the mass range of high-performance mass spectrometers and use of a split probe sample introduction device. Our vision is that, with further development of fundamentals and dedicated sources, both spatial- and temporal-resolution measurements are within reach if sensitivity is addressed for decreasing sample-size measurements.

摘要

原理

已开发出用于生物质谱(MS)的新电离方法,在该方法中,基质无需任何额外能量输入就能将非挥发性分析物提升为气相离子。我们认为,需要更多基础知识来评估其在合成聚合物和添加剂领域的分析效用。

方法

使用了不同的质谱仪(赛默飞世尔Orbitrap(Q-)Exactive(Focus);沃特世SYNAPT G2(S))。将基质/分析物(/盐)样品直接从固态和表面暴露于低于大气压的环境中时,多电荷聚合物离子的形成有助于使用先进的质谱仪检测包括消费品(如口香糖)在内的聚合材料。

结果

令人惊讶的是,仅使用小分子基质化合物(如2-甲基-2-硝基丙烷-1,3-二醇或3-硝基苯甲腈)和一种盐(如单价或二价阳离子),此类样品在暴露于低于大气压的环境中时,就能将非挥发性聚合物和非挥发性盐转化为多电荷离子进入气相。这些成功与质谱中电离的传统认识相矛盾,因为非挥发性聚合物不仅可以通过少量挥发性基质,还可以通过通过非共价金属阳离子加合使分析物电离所需的盐提升为气相离子。展示了用于直接分析合成聚合物和增塑剂的原型真空基质辅助电离(vMAI)和采用非接触方法的自动化源,通过将样品直接引入质谱仪真空,将污染风险降至最低。

结论

展示了无需高压、激光甚至加热即可从表面进行直接电离的方法,通过多电荷离子实现(超高)分辨率和精确质量测量,扩展了高性能质谱仪的质量范围,并使用分流探针进样装置来表征详细材料。我们的愿景是,随着基础理论和专用源的进一步发展,如果能够解决灵敏度问题以减小样品尺寸测量,那么空间和时间分辨率测量都将成为可能。

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