Formation of [M-H]+ of 4-Substituted-1-(methoxymethyl)benzene Derivatives under Positive Fast Atom Bombardment Ionization.

Q3 Physics and Astronomy Mass spectrometry Pub Date : 2025-01-01 Epub Date: 2025-03-13 DOI:10.5702/massspectrometry.A0171
Shizuyo Horiyama, Motohiro Shizuma
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Abstract

The appearance of the characteristic peak of the hydride-eliminated molecule [M-H]+ under a positive ion mode (positive) fast atom bombardment (FAB) ionization condition and liquid-assisted secondary ion mass spectrometry (LSIMS) conditions is known for some compounds and the mechanism of its formation has been investigated. In this study, we investigated the formation mechanism of the hydride-eliminated molecule [M-H]+ from 4-substituted-1-(methoxymethyl)benzene under a positive FAB ionization condition. The mass spectra of 4-methoxy-1-(methoxymethyl)benzene (1), 4-methoxy-1-(methoxymethyl-d 2-)benzene (1-d 2), and 4-methoxy-1-(methoxymethyl-d 3)benzene (1-d 3) were measured under the positive FAB conditions. [M-H]+ was observed for 1 and 1-d 3, and [M-D]+ for 1-d 2, indicating that the site of hydride elimination was the methylene of the 1-(methoxymethyl) moiety. Since [M-H]+ was hardly observed under the conditions of positive electron ionization and positive chemical ionization in the gas phase, the hydride elimination is a reaction specific to positive FAB ionization. To examine the contribution of the 4-substituent to the hydride elimination reaction, the mass spectra of (methoxymethyl)benzene (2) and 4-nitro-1-(methoxymethyl)benzene (3) were measured using the positive FAB. The ordering of the relative peak intensity of [M-H]+ for [M+H]+ in the FAB mass spectra was 1 > 2 > 3, and the results suggest that the electron-donating power of the substituents is an important factor in the formation of [M-H]+.

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正快速原子弹轰击电离下 4-取代-1-(甲氧基甲基)苯衍生物 [M-H]+ 的形成。
已知某些化合物在正离子模式(正)快原子轰击(FAB)电离条件和液体辅助二次离子质谱(LSIMS)条件下会出现氢化物消除分子[M-H]+的特征峰,并对其形成机制进行了研究。在本研究中,我们研究了4-取代-1-(甲氧基甲基)苯在正FAB电离条件下氢化物消除分子[M-H]+的形成机理。测定了4-甲氧基-1-(甲氧基甲基)苯(1)、4-甲氧基-1-(甲氧基甲基-d 2-)苯(1-d 2)和4-甲氧基-1-(甲氧基甲基-d 3)苯(1-d 3)在正FAB条件下的质谱。在1和1- d3中观察到[M-H]+,在1- d2中观察到[M-D]+,表明氢化物消除的位置是1-(甲氧基甲基)部分的亚甲基。由于[M-H]+在气相的正电子电离和正化学电离条件下很难被观察到,因此氢化物的消除是FAB正电离所特有的反应。为了考察4取代基对氢化物消除反应的贡献,用正FAB测定了(甲氧基甲基)苯(2)和4-硝基-1-(甲氧基甲基)苯(3)的质谱。在FAB质谱中,[M-H]+对[M+H]+的相对峰强度排序为1 b> 2 bbbb3,结果表明取代基的给电子能力是[M-H]+形成的重要因素。
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来源期刊
Mass spectrometry
Mass spectrometry Physics and Astronomy-Instrumentation
CiteScore
1.90
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0.00%
发文量
3
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