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气相中鏻离子与环氧化物和硫环氧化物的 Meerwein 反应。

Meerwein reaction of phosphonium ions with epoxides and thioepoxides in the gas phase.

作者信息

Meurer Eduardo C, Chen Hao, Riter Leah S, Cooks R Graham, Eberlin Marcos N

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

J Am Soc Mass Spectrom. 2004 Mar;15(3):398-405. doi: 10.1016/j.jasms.2003.11.006.

Abstract

Phosphonium ions are shown to undergo a gas-phase Meerwein reaction in which epoxides (or thioepoxides) undergo three-to-five-membered ring expansion to yield dioxaphospholanium (or oxathiophospholanium) ion products. When the association reaction is followed by collision-induced dissociation (CID), the oxirane (or thiirane) is eliminated, making this ion molecule reaction/CID sequence a good method of net oxygen-by-sulfur replacement in the phosphonium ions. This replacement results in a characteristic mass shift of 16 units and provides evidence for the cyclic nature of the gas-phase Meerwein product ions, while improving selectivity for phosphonium ion detection. This reaction sequence also constitutes a gas-phase route to convert phosphonium ions into their sulfur analogs. Phosphonium and related ions are important targets since they are commonly and readily formed in mass spectrometric analysis upon dissociative electron ionization of organophosphorous esters. The Meerwein reaction should provide a new and very useful method of recognizing compounds that yield these ions, which includes a number of chemical warfare agents. The Meerwein reaction proceeds by phosphonium ion addition to the sulfur or oxygen center, followed by intramolecular nucleophilic attack with ring expansion to yield the 1,3,2-dioxaphospholanium or 1,3,2-oxathiophospholanium ion. Product ion structures were investigated by CID tandem mass spectrometry (MS(2)) experiments and corroborated by DFT/HF calculations.

摘要

研究表明,鏻离子会发生气相Meerwein反应,其中环氧化物(或硫代环氧化物)会进行三到五元环的扩环反应,生成二氧杂磷杂环戊烷鎓(或氧硫杂磷杂环戊烷鎓)离子产物。当缔合反应之后进行碰撞诱导解离(CID)时,环氧乙烷(或硫杂环丙烷)会被消除,使得这种离子-分子反应/CID序列成为鏻离子中净氧被硫取代的一种很好的方法。这种取代导致特征性的16单位质量位移,并为气相Meerwein产物离子的环状性质提供了证据,同时提高了鏻离子检测的选择性。该反应序列还构成了一条将鏻离子转化为其硫类似物的气相途径。鏻离子及相关离子是重要的目标物,因为它们在有机磷酸酯的解离电子电离质谱分析中通常很容易形成。Meerwein反应应该会提供一种全新且非常有用的方法来识别能产生这些离子的化合物,其中包括一些化学战剂。Meerwein反应通过鏻离子加成到硫或氧中心,随后进行分子内亲核进攻并伴随环扩张,生成1,3,2-二氧杂磷杂环戊烷鎓或1,3,2-氧硫杂磷杂环戊烷鎓离子。通过CID串联质谱(MS(2))实验研究了产物离子结构,并通过DFT/HF计算进行了证实。

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