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通过质谱法研究 N-苄基铵和 N-苄基亚胺离子离解时苄基阳离子的气相化学。

Gas-phase chemistry of benzyl cations in dissociation of N-benzylammonium and N-benzyliminium ions studied by mass spectrometry.

机构信息

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

出版信息

J Am Soc Mass Spectrom. 2012 May;23(5):823-33. doi: 10.1007/s13361-012-0344-8. Epub 2012 Feb 25.

Abstract

In this study, the fragmentation reactions of various N-benzylammonium and N-benzyliminium ions were investigated by electrospray ionization mass spectrometry. In general, the dissociation of N-benzylated cations generates benzyl cations easily. Formation of ion/neutral complex intermediates consisting of the benzyl cations and the neutral fragments was observed. The intra-complex reactions included electrophilic aromatic substitution, hydride transfer, electron transfer, proton transfer, and nucleophilic aromatic substitution. These five types of reactions almost covered all the potential reactivities of benzyl cations in chemical reactions. Benzyl cations are well-known as Lewis acid and electrophile in reactions, but the present study showed that the gas-phase reactivities of some suitably ring-substituted benzyl cations were far richer. The 4-methylbenzyl cation was found to react as a Brønsted acid, benzyl cations bearing a strong electron-withdrawing group were found to react as electron acceptors, and para-halogen-substituted benzyl cations could react as substrates for nucleophilic attack at the phenyl ring. The reactions of benzyl cations were also related to the neutral counterparts. For example, in electron transfer reaction, the neutral counterpart should have low ionization energy and in nucleophilic aromatic substitution reaction, the neutral counterpart should be piperazine or analogues. This study provided a panoramic view of the reactions of benzyl cations with neutral N-containing species in the gas phase.

摘要

在这项研究中,通过电喷雾电离质谱研究了各种 N-苄基铵和 N-苄基亚胺离子的碎裂反应。一般来说,N-苄基阳离子的解离很容易生成苄基阳离子。观察到由苄基阳离子和中性碎片组成的离子/中性配合物中间体的形成。内配合物反应包括亲电芳香取代、氢转移、电子转移、质子转移和亲核芳香取代。这五种类型的反应几乎涵盖了苄基阳离子在化学反应中的所有潜在反应性。苄基阳离子在反应中是众所周知的路易斯酸和亲电试剂,但本研究表明,一些适当取代的苄基阳离子的气相反应性要丰富得多。发现 4-甲基苄基阳离子作为布朗斯特酸反应,带有强吸电子基团的苄基阳离子作为电子受体反应,对位卤代取代的苄基阳离子可作为亲核进攻苯环的底物反应。苄基阳离子的反应也与中性对应物有关。例如,在电子转移反应中,中性对应物应该具有低的电离能,而在亲核芳香取代反应中,中性对应物应该是哌嗪或类似物。这项研究提供了气相中苄基阳离子与含氮中性物种反应的全景图。

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