Mass spectrometry of analytical derivatives. 2. "Ortho" and "Para" effects in electron ionization mass spectra of derivatives of hydroxy, mercapto and amino benzoic acids.

Mass-spektrometria Pub Date : 2016-01-01
Nino G Todua, Anzor I Mikaia
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Abstract

Derivatives requiring either anhydrous or aqueous reaction conditions were prepared for robust and reliable gas chromatography/mass spectrometry (GC/MS) characterization of hydroxyl, mercapto, and amino benzoic acids Methylation and trialkylsilytation are employed for blocking the acidic function. Alkyl, trimethylsilyl, acetyl, perfluoroacyl and alkoxycarbonyl derivatization groups are introduced to hydroxyl, mercapto and amino functions. The electron ionization induced fragmentation characteristics of corresponding derivatives are explained by comparing the MS1 spectra of unlabeled compounds to their 2H and 13C labeled analogs, and analysis of collision-induced dissociation data from MS2 spectra. Competing fragmentation alternatives are identified and specific decomposition processes are detailed that characterize (a) ortho isomers due to interaction or vicinal functional substituents and (b) para isomers prone to forming para quinoid type structures. Skeletal and hydrogen rearrangements typical for methyl benzoates and the blocking groups are considered when discussing diagnostically important ions. Characteristic ions produced as a result of rearrangements in ortho isomers are classified, and skeletal rearrangements required to produce para quinoid type ions specific for para isomers are noted. Key ions for structure elucidation and differentiation of isomers for derivatives of substituted benzoic acids by GC/MS are suggested.

质谱分析衍生物。2. 羟基、巯基和氨基苯甲酸衍生物电子电离质谱中的“邻位”和“对位”效应。
制备了需要无水或水反应条件的衍生物,用于稳定可靠的气相色谱/质谱(GC/MS)表征羟基,巯基和氨基苯甲酸。甲基化和三烷基硅化用于阻断酸性功能。烷基、三甲基硅基、乙酰基、全氟酰基和烷氧羰基衍生化基团被引入羟基、巯基和氨基官能团。通过将未标记化合物的MS1光谱与2H和13C标记的类似物进行比较,并从MS2光谱中分析碰撞诱导解离数据,解释了相应衍生物的电子电离诱导碎片化特征。鉴定了相互竞争的碎片替代方案,并详细描述了具体的分解过程,这些过程表征了(a)由于相互作用或邻近功能取代基而产生的邻位异构体和(b)易于形成对类醌型结构的对异构体。骨架和氢重排典型的苯甲酸甲酯和阻断基团被认为是讨论诊断重要的离子。由于邻位异构体重排而产生的特征离子被分类,并注意到产生对异构体特有的对醌类离子所需的骨骼重排。提出了用GC/MS分析取代苯甲酸衍生物同分异构体结构的关键离子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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