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关于气相中质子化氯甲酸酯的命运:形成HCl与氯甲酸之间的竞争。

On the fate of protonated chloroformates in the gas phase: a competition between forming HCl and chloroformic acid.

作者信息

Diedhiou Malick, Mayer Paul M

机构信息

Department of Chemistry and Biomolecular Sciences, University of Ottawa, Ottawa K1N 6N5, Canada.

出版信息

J Mass Spectrom. 2024 Jun;59(6):e5044. doi: 10.1002/jms.5044.

Abstract

Chloroformates are prevalent in the atmosphere due to their utilization as fuel additives and industrial solvents. These species may undergo interactions with atmospheric water resulting in protonated chloroformates. This study delves into the gas-phase dissociation of these protonated species. Tandem mass spectrometry was employed to scrutinize the unimolecular dissociation of protonated methyl (1), ethyl (2), neopentyl (3), and phenyl chloroformate (4). Notably, 1 and 4 exhibited HCl loss, yielding CHOCO and CHOCO, respectively, with 1 additionally generating neutral methanol and ClCO. 4 additionally loses CO and CO. In contrast, 2 and 3 each only exhibit a single fragmentation channel, with 2 losing CH to generate protonated chloroformic acid and 3 generating protonated 2-methylbutene by losing neutral chloroformic acid. Density functional theory at the B3LYP/6-311+G(d,p) level of theory was employed to explore minimum energy reaction pathways for each ion, and CBS-QB3 single-point energy calculations were added to provide reliable energetics. The Rice-Ramsperger-Kassel-Marcus (RRKM) calculations of the rate constants for selected competing processes were carried out to link theory and experiment. One common unimolecular process observed was the 1,3-H shift of the proton from the carbonyl oxygen to the ester oxygen before dissociation.

摘要

氯甲酸酯类作为燃料添加剂和工业溶剂被广泛使用,因此在大气中普遍存在。这些物质可能会与大气中的水发生相互作用,生成质子化氯甲酸酯。本研究深入探讨了这些质子化物质的气相解离。采用串联质谱法研究了质子化的甲基氯甲酸酯(1)、乙基氯甲酸酯(2)、新戊基氯甲酸酯(3)和苯基氯甲酸酯(4)的单分子解离。值得注意的是,1和4表现出HCl损失,分别生成CHOCO和CHOCO,1还生成中性甲醇和ClCO。4还会损失CO和CO。相比之下,2和3各自仅表现出一个碎裂通道,2通过失去CH生成质子化氯甲酸,3通过失去中性氯甲酸生成质子化2-甲基丁烯。采用B3LYP/6-311+G(d,p)理论水平的密度泛函理论来探索每个离子的最低能量反应途径,并添加CBS-QB3单点能量计算以提供可靠的能量学数据。对选定竞争过程的速率常数进行了Rice-Ramsperger-Kassel-Marcus(RRKM)计算,以将理论与实验联系起来。观察到的一个常见单分子过程是质子在解离前从羰基氧向酯氧的1,3-H迁移。

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