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首页> 外文期刊>Journal of mass spectrometry: JMS >The sequential dissociation of protonated polyethylene glycols
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The sequential dissociation of protonated polyethylene glycols

机译:质子化聚乙二醇的顺序解离

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摘要

Early investigations of protonated polyethylene glycol fragmentation suggested the dissociation mechanism includes both direct and sequential processes. Experiments designed to study the proposed mechanisms of sequential dissociation are absent from the literature. In order to obtain additional experimental details about the fragmentation reactions, the dissociation of protonated polyethylene glycol was studied by energy-dependent collision-induced dissociation (CID). Key fragment ions were separated by mass differences corresponding to the loss of single monomer units. Several fragment ions were also generated by in-source fragmentation and studied by CID. These experiments indicate the primary ions undergo sequential dissociation by the loss of either one or two monomer units. The results suggest that at least two different mechanisms must be considered to explain the sequential dissociation of protonated polyethylene glycols. The reaction involving the elimination of two subunits suggests the loss of a six-membered 1,4-dioxane product, while the elimination of a single subunit involves the loss of acetaldehyde by a 1,2-hydride shift rearrangement.
机译:质子化聚乙二醇片段化的早期研究表明,解离机理包括直接过程和顺序过程。文献中缺少旨在研究所提出的顺序解离机制的实验。为了获得有关片段化反应的其他实验细节,通过能量依赖碰撞诱导解离(CID)研究了质子化聚乙二醇的解离。关键片段离子通过质量差异分开,质量差异对应于单个单体单元的损失。还通过源内裂解生成了一些碎片离子,并通过CID进行了研究。这些实验表明,一次离子由于一个或两个单体单元的丢失而经历了顺序离解。结果表明,必须考虑至少两种不同的机理来解释质子化聚乙二醇的顺序解离。涉及消除两个亚基的反应表明损失了六元的1,4-二恶烷产物,而消除了一个亚基涉及通过1,2-氢化物移位重排而损失了乙醛。

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