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质子化位置至关重要:解析质子化月桂烯和芳樟醇的单分子化学

Where You Protonate Matters: Deciphering the Unimolecular Chemistry of Protonated Myrcene and Linalool.

作者信息

Buenger Edgar White, Mayer Paul M

机构信息

Department of Chemistry and Biomolecular Sciences, University of Ottawa, Ottawa, Canada.

出版信息

J Mass Spectrom. 2024 Oct;59(10):e5096. doi: 10.1002/jms.5096.

Abstract

The unimolecular reactions of protonated myrcene and linalool were investigated by collision-induced dissociation and density functional theory calculations. Experiments on a triple quadrupole mass spectrometer showed that protonated myrcene undergoes two major unimolecular reactions losing propene and isobutene, and two minor reactions of ethene and propane loss. In each case, the product ion consists of a substituted five-member ring. Protonation of myrcene was found to form four distinct protomers, three of which can be significantly populated in the ion source. The observed fragmentation reactions were calculated and found to depend on the starting protomer. Each pathway consisted of several hydrogen-migration and ring-forming/opening steps on the way to the observed products. Likewise, protonation of linalool also produces three distinct protomers, with the global minimum being formed by protonation of a central double bond. The major reaction is water loss to form protonated myrcene, but two minor channels were also observed resulting in loss of acetone and isobutene. The calculated minimum energy reaction pathways were found to be consistent with the relative abundances of the ions in the experimental breakdown diagrams.

摘要

通过碰撞诱导解离和密度泛函理论计算研究了质子化月桂烯和芳樟醇的单分子反应。在三重四极杆质谱仪上进行的实验表明,质子化月桂烯发生两个主要的单分子反应,分别失去丙烯和异丁烯,以及两个次要反应,分别失去乙烯和丙烷。在每种情况下,产物离子都由一个取代的五元环组成。发现月桂烯质子化形成四种不同的质子异构体,其中三种在离子源中可以大量存在。对观察到的裂解反应进行了计算,发现其取决于起始质子异构体。每条途径在生成观察到的产物的过程中都包含几个氢迁移和环形成/开环步骤。同样,芳樟醇质子化也产生三种不同的质子异构体,其全局最小值由中心双键质子化形成。主要反应是失水形成质子化月桂烯,但也观察到两个次要通道,导致丙酮和异丁烯的损失。计算得到的最低能量反应途径与实验裂解图中离子的相对丰度一致。

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