抗芳香性
化学
芳香性
烯丙基重排
单重态
取代基
计算化学
离子
戒指(化学)
结晶学
立体化学
分子
有机化学
激发态
原子物理学
物理
催化作用
作者
Rinat F. Salikov,Alexander Yu. Belyy,Matvey K. Ilyushchenko,Dmitry N. Platonov,Alena D. Sokolova,Yu. V. Tomilov
标识
DOI:10.1002/chem.202401041
摘要
Investigations of the nature and degree of antiaromaticity of cycloheptatrienyl anion derivatives using both experimental and computational tools are presented. The ground state of cycloheptatrienyl anion in the gas phase is triplet, planar and Baird‐aromatic. In DMSO, it assumes a singlet distorted allylic form with a paratropic ring current. The other derivatives in both phases assume either allylic or diallylic conformations depending on the substituent pattern. A combination of experimental and computational methods was used to determine the pKa values of 16 derivatives in DMSO, which ranged from 36 to –10.7. We revealed that the stronger stabilization of the anionic system, which correlates with acidity, does not necessarily imply a lower degree of anti‐aromaticity in terms of magnetic properties. Conversely, the substitution pattern first affects the geometry of the ring through the bulkiness of the substituents and their better conjugation with a more distorted system. Consequently, the distortion reduces the cyclic conjugation in the π‐system and thereby decreases the paratropic current in a magnetic field, which manifests itself as a decrease in the NICS. The triplet‐state geometries and magnetic properties are nearly independent on the substitution pattern, which is typical for simple aromatic systems.
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