首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Aromatic vs Diradical Character in the Transition States of the Cope Rearrangements of 1,5-Hexadiene and Its Cyano Derivatives
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Aromatic vs Diradical Character in the Transition States of the Cope Rearrangements of 1,5-Hexadiene and Its Cyano Derivatives

机译:1,5-己二烯及其氰基衍生物的应对重排过渡态中的芳香族与双自由基性

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摘要

Using geometries optimized at the (U)B3LYP/6-31G(d) level, ab initio modern valence bond calculations are used to quantify directly the relative importance of aromatic, diradical, and bisallyl contributions to the transition states of gas-phase Cope rearrangements of 1,5-hexadiene and various cyano derivatives. The main effect on the character of the transition state of substituting radical-stabilizing cyano groups is found to be indirect, via the geometry, with shorter interallyl separations favoring diradical character and larger ones favoring aromaticity. In the case of the parent Cope reaction, the weights of the aromatic and diradical components are comparable at the transition state. We find that bisallyl character only becomes important for transition states with rather large interallyl separations.
机译:使用在(U)B3LYP / 6-31G(d)级别优化的几何形状,从头算起现代价键计算可直接量化芳族,双自由基和双烯丙基对气相Cope重排过渡态贡献的相对重要性1,5-己二烯和各种氰基衍生物。发现通过几何结构,对取代自由基稳定的氰基基团的过渡态特征的主要影响是间接的,其中较短的烯丙基间隔有利于双自由基特性,较大的烯丙基间隔有利于芳族基团。在母体Cope反应的情况下,芳族和双自由基组分的重量在过渡态是可比的。我们发现,双烯丙基特性仅对于具有相当大的烯丙基间隔的过渡态变得重要。

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