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正碳离子中的轭合稳定与邻基协助

Conjugative Stabilization versus Anchimeric Assistance in Carbocations.

机构信息

A.E. Favorsky Irkutsk Institute of Chemistry, Siberian Branch, Russian Academy of Sciences, 1 Favorsky Str., 664033 Irkutsk, Russia.

出版信息

Molecules. 2022 Dec 21;28(1):38. doi: 10.3390/molecules28010038.

Abstract

In this study, an old concept of anchimeric assistance is viewed from a different angle. Primary cations with two different heteroatomic substituents in the α-position to the cationic carbon atom CHXY−CH2+ (X, Y = Me2N, MeO, Me3Si, Me2P, MeS, MeS, Br) can be stabilized by the migration of either the X or Y group to the cation center. In each case, the migration can be either complete, resulting in the transfer of the migrating group to the adjacent carbon atom and the formation of a secondary carbocation stabilized by the remaining heteroatom, or incomplete, leading to an anchimerically assisted iranium ion. For all combinations of the above groups, these transformations have been studied by theoretical analysis at the MP2/aug-cc-pVTZ level and were shown to occur depending on the ability of anchimeric assistance by X and Y, as well as the conformation of the starting primary carbocation. In the conformers of α-amino cations with the p-orbital, C−N bond and the nitrogen lone pair in one plane, the Me2N group migrates to the cationic center to give aziranium ions. Otherwise, the second heteroatom is shifted to give iminium ions, without or with very slight anchimeric assistance. In the α-methoxy cations, the MeO group can be shifted to the cationic center to give the O-anchimerically assisted ions as local minima, the global minima being the ions anchimerically assisted by another heteroatom. The electropositive silicon tends to migrate towards the cationic center, but with the formation of a π-complex of the Me3Si cation with the C=C bond rather than a Si-anchimerically assisted cation. The phosphorus atom can either fully migrate to the cationic center (X = P, Y = S, Se) or form anchimerically stabilized phosphiranium ions (X = P, Y = O, Si, Br). The order of the anchimeric assistance for the heaviest atoms decreases in the order Se >> S > Br.

摘要

在这项研究中,从一个不同的角度看待了古老的亲核协助概念。在α-位具有两个不同杂原子取代基的伯阳离子 CHXY−CH2+(X,Y = Me2N,MeO,Me3Si,Me2P,MeS,MeSe,Br)可以通过 X 或 Y 基团迁移到阳离子中心而稳定。在每种情况下,迁移都可以是完全的,导致迁移基团转移到相邻的碳原子上,并形成由剩余杂原子稳定的二级碳正离子,或者是不完全的,导致亲核协助的铱离子。对于上述所有基团的组合,已经通过 MP2/aug-cc-pVTZ 水平的理论分析研究了这些转化,并表明这些转化取决于 X 和 Y 的亲核协助能力以及起始伯碳正离子的构象。在具有 p 轨道、C−N 键和氮孤对在同一平面上的α-氨基阳离子的构象中,Me2N 基团迁移到阳离子中心以得到氮杂环丙烷离子。否则,第二个杂原子迁移得到亚胺离子,没有或只有很少的亲核协助。在α-甲氧基阳离子中,MeO 基团可以迁移到阳离子中心,以得到 O-亲核协助的离子作为局部最小值,全局最小值是由另一个杂原子亲核协助的离子。正电性的硅倾向于迁移到阳离子中心,但形成 Me3Si 阳离子与 C=C 键的π-配合物,而不是 Si-亲核协助的阳离子。磷原子可以完全迁移到阳离子中心(X = P,Y = S,Se),或者形成亲核稳定的膦离子(X = P,Y = O,Si,Br)。最重原子的亲核协助顺序按 Se >> S > Br 的顺序降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/175f/9822469/1bde1c2a8c75/molecules-28-00038-g001.jpg

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