首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Evaluating Atmospheric pressure Solids Analysis Probe (ASAP) mass spectrometry for the analysis of low molecular weight synthetic polymers
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Evaluating Atmospheric pressure Solids Analysis Probe (ASAP) mass spectrometry for the analysis of low molecular weight synthetic polymers

机译:评估用于分析低分子量合成聚合物的大气压固体分析探针(ASAP)质谱

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摘要

Atmospheric pressure Solids Analysis Probe (ASAP) mass spectrometry has facilitated the ionisation of oligomers from low molecular weight synthetic polymers, poly(ethylene glycol) (PEG: M _n = 1430) and poly(styrene) (PS: M _n = 1770), directly from solids, providing a fast and efficient method of identification. Ion source conditions were evaluated and it was found that the key instrument parameter was the ion source desolvation temperature which, when set to 600 °C was sufficient to vapourise the heavier oligomers for ionisation. PS, a non-polar polymer that is very challenging to analyse by MALDI or ESI without the aid of metal salts to promote cationisation, was ionised promptly by ASAP resulting in the production of radical cations. A small degree of in-source dissociation could be eliminated by control of the instrument ion source voltages. The fragmentation observed through in-source dissociation could be duplicated in a controlled manner through Collision-Induced Dissociation (CID) of the radical cations. PEG, which preferentially ionises through adduction with alkali metal cations in MALDI and ESI, was observed as a protonated molecular ion by ASAP. In-source dissociation could not be eliminated entirely and the fragmentation observed resulted from cleavage of the C-C and C-O backbone bonds, as opposed to only C-O bond cleavage observed from tandem mass spectrometry.
机译:大气压固体分析探针(ASAP)质谱促进了低分子量合成聚合物,聚乙二醇(PEG:M _n = 1430)和聚苯乙烯(PS:M _n = 1770)中低聚物的电离,直接从固体中分离,提供了一种快速有效的识别方法。对离子源条件进行了评估,发现关键的仪器参数是离子源去溶剂化温度,将其设置为600°C时足以汽化较重的低聚物以进行电离。 PS是一种非极性聚合物,在不借助金属盐促进阳离子化的情况下通过MALDI或ESI分析非常具有挑战性,因此ASAP迅速将其离子化,从而产生了自由基阳离子。通过控制仪器离子源电压,可以消除少量的源内离解。通过源内解离观察到的碎片可以通过自由基阳离子的碰撞诱导解离(CID)以受控方式复制。 PEG通过在MALDI和ESI中与碱金属阳离子加成优先离子化,被ASAP观察为质子化分子离子。源内解离无法完全消除,观察到的碎片是由C-C和C-O主链键的断裂所致,而不是由串联质谱法观察到的C-O键的断裂。

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