首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Mechanism of the Electronic Stabilization of the 3MR and Divalent Carbon of Bis(qiisopropylamino)cyclopropenylidene
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Mechanism of the Electronic Stabilization of the 3MR and Divalent Carbon of Bis(qiisopropylamino)cyclopropenylidene

机译:双(齐异丙基氨基)环丙烯基的3MR和二价碳的电子稳定机理

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摘要

Analysis of the topology of the electron density of bis(dimethylamino)cyclopropenylidene as a model of the recently synthesized,stable bis(diisopropylamino)cyclopropenylidene with the quantum theory of atoms in molecules is used to investigate the stabilizing electronic effects at the reactive carbene site by amino substitution.This work demonstrates that the plane perpendicular lone pairs of nitrogen utilize in-plane sigma-aromaticity as a conduit to delocalize charge to the carbene carbon C2,where it is transferred preferentially back into the pi-plane at the site through simga-pi polarization.C2 is thus stabilized relative to the parent cyclopropenylidene,c-C3H2,by a very different mechanism than that suggested in the orbital view of n_(pi)(N)and pi(C=C)conjugation and n_n(N)->p_(pi)*(C2)hyperconjugation.Validation of this premise is also found in properties of asymmetric atomic quadrupole tensors,bond path ellipticities,and diamagnetic/paramagnetic components of NMR shielding tensors.
机译:用分子中原子的量子理论分析双(二甲基氨基)环丙烯基的电子密度的拓扑结构,作为最近合成的稳定双(二异丙基氨基)环丙烯基的模型,用于研究在反应性卡宾位上的稳定电子效应。这项工作表明,平面垂直的孤对氮利用平面内sigma-aromaticity作为将电荷离域到卡宾碳C2的管道,在那里它通过simga-优先转移回该位的pi平面。 pi极化。因此,C2通过与n_(pi)(N)和pi(C = C)共轭和n_n(N)轨道图中建议的机制非常不同的机制相对于母体环丙烯基c-C3H2稳定。 -> p_(pi)*(C2)超共轭。此前提的验证还存在于不对称原子四极子张量,键合路径椭圆率以及NMR屏蔽ten顺/顺磁分量的性质中rs。

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