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富烯、酮环多烯、富烯酮和重氮环多烯中的芳香性和反芳香性。

Aromaticity and antiaromaticity in fulvenes, ketocyclopolyenes, fulvenones, and diazocyclopolyenes.

作者信息

Najafian Katayoun, von Ragué Schleyer Paul, Tidwell Thomas T

机构信息

Department of Chemistry, University of Toronto, Toronto, Ontario, M5S 3H6, Canada.

出版信息

Org Biomol Chem. 2003 Oct 7;1(19):3410-7. doi: 10.1039/b304718k.

Abstract

The structures, energies, natural charges, and magnetic properties of 3-, 5-, 7-, and 9-membered cyclic polyenes 1-4, respectively, with exocyclic methylene, keto, ketenyl, and diazo substituents (a-d, respectively) were computed at the B3LYP/6-311G+ //B3LYP/6-311+G level to elucidate their aromatic and antiaromatic properties. The corresponding conjugated cyclic cations le and 3e were also studied. The criteria used are isomerization energies (ISE), magnetic susceptibility exaltations (lambda), aromatic stabilization energies (ASE), nucleus independent chemical shifts (NICS), and bond length alternation (deltaR). Planar C2v structures were found to be the lowest energy minima with the exceptions of diazocyclopropene (1d), cycloheptafulvenone (3c), diazocycloheptatriene (3d), and all of the cyclononatetraene derivatives (4). The fulvenes (1a-4a) have modest aromatic or antiaromatic character, and are used as standards for comparison. By these criteria the ketenylidene and diazo cyclopropenes and cycloheptatrienes 1,3-c,d and oxo cyclopentadiene and cyclononatetraene 2,4b are antiaromatic, while the 5- and 9-ring ketenyl and diazo compounds and 3- and 7-ring ketones are aromatic. The degree of aromatic/antiaromatic character decreases with ring size. The consistent agreement with Hückel rule predictions for all the criteria shows their utility for the evaluation of the elusive properties of aromaticity and antiaromaticity.

摘要

分别计算了带有环外亚甲基、酮基、烯酮基和重氮取代基(分别为a - d)的3、5、7和9元环多烯1 - 4的结构、能量、自然电荷和磁性,计算水平为B3LYP/6 - 311G+ //B3LYP/6 - 311+G,以阐明它们的芳香性和反芳香性。还研究了相应的共轭环阳离子1e和3e。所使用的标准包括异构化能(ISE)、磁化率增量(λ)、芳香稳定能(ASE)、核独立化学位移(NICS)和键长交替(ΔR)。除了重氮环丙烯(1d)、环庚富烯酮(3c)、重氮环庚三烯(3d)以及所有环壬四烯衍生物(4)外,平面C2v结构被发现是能量最低的极小值。富烯(1a - 4a)具有适度的芳香或反芳香特性,并用作比较的标准。根据这些标准,烯酮基亚基和重氮环丙烯以及环庚三烯1,3 - c、d和氧代环戊二烯以及环壬四烯2,4 - b是反芳香性的,而5元和9元的烯酮基和重氮化合物以及3元和7元的酮是芳香性的。芳香/反芳香特性的程度随环大小而降低。所有标准与休克尔规则预测的一致相符表明了它们在评估难以捉摸的芳香性和反芳香性特性方面的实用性。

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