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环辛四烯低电子态中的芳香性反转及其对键合的影响。

Aromaticity reversals and their effect on bonding in the low-lying electronic states of cyclooctatetraene.

作者信息

Karadakov Peter B, Preston Nicholas

机构信息

Department of Chemistry, University of York, Heslington, York, YO10 5DD, UK.

出版信息

Phys Chem Chem Phys. 2021 Nov 10;23(43):24750-24756. doi: 10.1039/d1cp04394c.

Abstract

Aromaticity reversals and their effect on chemical bonding in the low-lying electronic states of cyclooctatetraene (COT) are investigated through a visual approach which examines the variations in isotropic magnetic shielding in the space surrounding the molecule. The ground state (S) of COT is shown to be strongly antiaromatic at the π-bond-shifting transition state (TS), a regular octagon of symmetry; S antiaromaticity decreases at the planar bond-alternating tub-to-tub ring-inversion TS but traces of it are shown to persist even at the tub-shaped local minimum geometry. The lowest triplet (T) and first singlet excited (S) states of COT are found to have very similar geometries and visually indistinguishable shielding distributions closely resembling that in benzene and indicating similarly high levels of aromaticity. Unexpectedly, COT diverges from its antiaromatic predecessor, cyclobutadiene, in the properties of the second singlet excited state (S): In cyclobutadiene S is antiaromatic but in COT this state turns out to be strongly aromatic, with a shielding distribution closely following that around S benzene.

摘要

通过一种可视化方法研究了环辛四烯(COT)低电子态中的芳香性反转及其对化学键的影响,该方法考察了分子周围空间中各向同性磁屏蔽的变化。结果表明,COT的基态(S)在π键迁移过渡态(TS)(一个具有 对称性的正八边形)时具有很强的反芳香性;在平面键交替的桶状到桶状环反转TS处S的反芳香性降低,但即使在桶状局部极小几何结构处也显示仍有残留。发现COT的最低三重态(T)和第一单重激发态(S)具有非常相似的几何结构,并且在视觉上无法区分的屏蔽分布,与苯中的屏蔽分布非常相似,表明具有同样高的芳香性水平。出乎意料的是,COT在第二单重激发态(S)的性质上与其反芳香性前身环丁二烯不同:在环丁二烯中S是反芳香性的,但在COT中该状态结果是强芳香性的,其屏蔽分布与苯周围S态的屏蔽分布非常相似

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