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Fragmentation of oxime and silyl oxime ether odd-electron positive ions by the McLafferty rearrangement: new insights on structural factors that promote αβ fragmentation

机译:玉米蛋糕重排肟和甲硅烷基肟醚奇体正离子的碎片:新见解促进αβ碎片的结构因子

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摘要

The McLafferty rearrangement is an extensively studied fragmentation reaction for the odd-electron positive ions from a diverse range of functional groups and molecules. Here, we present experimental and theoretical results of 12 model compounds that were synthesized and investigated by GC-TOF MS and density functional theory calculations. These compounds consisted of three main groups: carbonyls, oximes and silyl oxime ethers. In all electron ionization mass spectra, the fragment ions that could be attributed to the occurrence of a McLafferty rearrangement were observed. For t-butyldimethylsilyl oxime ethers with oxygen in a β-position, the McLafferty rearrangement was accompanied by loss of the t-butyl radical. The various mass spectra showed that the McLafferty rearrangement is relatively enhanced compared with other primary fragmentation reactions by the following factors: oxime versus carbonyl, oxygen versus methylene at the β-position and ketone versus aldehyde. Calculations predict that the stepwise mechanism is favored over the concerted mechanism for all but one compound. For carbonyl compounds, C–C bond breaking was the rate-determining step. However, for both the oximes and t-butyldimethylsilyl oxime ethers with oxygen at the β-position, the hydrogen transfer step was rate limiting, whereas with a CH2 group at the β-position, the C–C bond breaking was again rate determining. n-Propoxy-acetaldehyde, bearing an oxygen atom at the β-position, is the only case that was predicted to proceed through a concerted mechanism. The synthesized oximes exist as both the (E)- and (Z)-isomers, and these were separable by GC. In the mass spectra of the two isomers, fragment ions that were generated by the McLafferty rearrangement were observed. Finally, fragment ions corresponding to the McLafferty reverse charge rearrangement were observed for all compounds at varying relative ion intensities compared with the conventional McLafferty rearrangement.
机译:咀术重排是一种来自各种官能团和分子的奇数电子正离子的广泛研究的碎片反应。这里,我们通过GC-TOF MS和密度泛函理论计算呈现12种模型化合物的实验和理论结果。这些化合物由三个主要组组成:羰基,肟和甲硅烷基醚。在所有电子电离质谱中,观察到可能归因于发生咀嚼物重排的片段离子。对于具有β-位置的氧的叔丁基二甲基甲硅烷基肟醚,咀嚼物重排伴随着叔丁基的损失。各种质谱表明,与其他主要碎裂反应相比,咀嚼型重排与其他因素相比:肟与羰基,氧对β-位置和酮与醛相比甲基。计算预测,逐步机构在除了一个化合物的所有化合物中的齐齐理机制上。对于羰基化合物,C-C键断裂是速率确定步骤。然而,对于在β-位置的氧气和T-丁基二甲基甲硅烷基肟和氧化叔丁基二甲基甲酰基醚,氢转移步骤是速率限制,而在β-位置处的CH2基团,C-C键分裂再次测定。在β-位置携带氧原子的N-丙氧基 - 乙醛是预测通过协调机制的唯一案例。合成的氧化肟作为(e) - 和(Z) - 异构体存在,并且这些氧化物可通过GC分离。在两种异构体的质谱中,观察到由咀嚼物重排产生的片段离子。最后,与传统的术术重排相比,对对应于不同离子强度的所有化合物观察到对应于咀型反向电荷重新排列的片段离子。

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