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通过离子-中性复合物的氢化物转移反应:质谱中质子化 N-苄基哌啶和质子化 N-苄基哌嗪的碎裂。

Hydride transfer reactions via ion-neutral complex: fragmentation of protonated N-benzylpiperidines and protonated N-benzylpiperazines in mass spectrometry.

机构信息

Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang 310027, China.

出版信息

J Mass Spectrom. 2010 May;45(5):496-503. doi: 10.1002/jms.1731.

Abstract

An ion-neutral complex (INC)-mediated hydride transfer reaction was observed in the fragmentation of protonated N-benzylpiperidines and protonated N-benzylpiperazines in electrospray ionization mass spectrometry. Upon protonation at the nitrogen atom, these compounds initially dissociated to an INC consisting of RC(6)H(4)CH(2) (R = substituent) and piperidine or piperazine. Although this INC was unstable, it did exist and was supported by both experiments and density functional theory (DFT) calculations. In the subsequent fragmentation, hydride transfer from the neutral partner to the cation species competed with the direct separation. The distribution of the two corresponding product ions was found to depend on the stabilization energy of this INC, and it was also approved by the study of substituent effects. For monosubstituted N-benzylpiperidines, strong electron-donating substituents favored the formation of RC(6)H(4)CH(2), whereas strong electron-withdrawing substituents favored the competing hydride transfer reaction leading to a loss of toluene. The logarithmic values of the abundance ratios of the two ions were well correlated with the nature of the substituents, or rather, the stabilization energy of this INC.

摘要

在电喷雾电离质谱中,观察到质子化 N-苄基哌啶和质子化 N-苄基哌嗪的碎片中存在离子-中性复合物(INC)介导的氢转移反应。在氮原子质子化后,这些化合物最初解离为由RC(6)H(4)CH(2)(R =取代基)和哌啶或哌嗪组成的 INC。尽管这种 INC 不稳定,但它确实存在,并得到了实验和密度泛函理论(DFT)计算的支持。在随后的碎裂中,来自中性伙伴的氢转移与直接分离竞争。两种相应产物离子的分布取决于该 INC 的稳定化能,这也得到了取代基效应研究的证实。对于单取代的 N-苄基哌啶,强供电子取代基有利于RC(6)H(4)CH(2)的形成,而强吸电子取代基有利于竞争的氢转移反应,导致甲苯的损失。两种离子丰度比的对数与取代基的性质,或者更确切地说,与该 INC 的稳定化能很好地相关。

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