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氨离子化聚醚的电喷雾串联质谱法。

Electrospray ionization tandem mass spectrometry of ammonium cationized polyethers.

机构信息

AkzoNobel Research, Development and Innovation, P.O. Box 10, 7400 AA, Deventer, The Netherlands.

出版信息

J Am Soc Mass Spectrom. 2011 May;22(5):837-44. doi: 10.1007/s13361-011-0101-4. Epub 2011 Mar 5.

Abstract

Quaternary ammonium salts (Quats) and amines are known to facilitate the MS analysis of high molar mass polyethers by forming low charge state adduct ions. The formation, stability, and behavior upon collision-induced dissociation (CID) of adduct ions of polyethers with a variety of Quats and amines were studied by electrospray ionization quadrupole time-of-flight, quadrupole ion trap, and linear ion trap tandem mass spectrometry (MS/MS). The linear ion trap instrument was part of an Orbitrap hybrid mass spectrometer that allowed accurate mass MS/MS measurements. The Quats and amines studied were of different degree of substitution, structure, and size. The stability of the adduct ions was related to the structure of the cation, especially the amine's degree of substitution. CID of singly/doubly charged primary and tertiary ammonium cationized polymers resulted in the neutral loss of the amine followed by fragmentation of the protonated product ions. The latter reveals information about the monomer unit, polymer sequence, and endgroup structure. In addition, the detection of product ions retaining the ammonium ion was observed. The predominant process in the CID of singly charged quaternary ammonium cationized polymers was cation detachment, whereas their doubly charged adduct ions provided the same information as the primary and tertiary ammonium cationized adduct ions. This study shows the potential of specific amines as tools for the structural elucidation of high molar mass polyethers.

摘要

季铵盐(Quats)和胺已知通过形成低电荷状态加合物离子来促进高摩尔质量聚醚的 MS 分析。通过电喷雾电离四极杆飞行时间、四极杆离子阱和线性离子阱串联质谱(MS/MS)研究了各种 Quats 和胺与聚醚的加合物离子的形成、稳定性和在碰撞诱导解离(CID)下的行为。线性离子阱仪器是轨道阱混合质谱仪的一部分,允许进行准确质量 MS/MS 测量。研究的 Quats 和胺具有不同的取代度、结构和大小。加合物离子的稳定性与阳离子的结构有关,特别是胺的取代度。单/双电荷伯铵和叔铵阳离子化聚合物的 CID 导致胺的中性损失,随后是质子化产物离子的碎裂。后者提供关于单体单元、聚合物序列和端基结构的信息。此外,还观察到保留铵离子的产物离子的检测。在单电荷季铵盐阳离子化聚合物的 CID 中,主要过程是阳离子脱落,而其双电荷加合物离子提供与伯铵和叔铵阳离子化加合物离子相同的信息。这项研究表明了特定胺作为高摩尔质量聚醚结构阐明工具的潜力。

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