Orozco-Ic Mesías, Soriano-Agueda Luis, Escayola Sílvia, Sundholm Dage, Merino Gabriel, Matito Eduard
Donostia International Physics Center (DIPC), Donostia, 20018 Euskadi, Spain.
Institut de Química Computacional i Catàlisi and Departament de Química, Universitat de Girona, C/Maria Aurèlia Capmany, 69, Girona, 17003 Catalonia, Spain.
J Org Chem. 2024 Feb 16;89(4):2459-2466. doi: 10.1021/acs.joc.3c02485. Epub 2024 Jan 18.
This study explores the aromaticity of doubly [5]helicene-bridged (1,4)cyclophane and triply [5]helicene-bridged (1,3,5)cyclophane via calculations of the magnetic response and of electronic aromaticity indices. The primary objective is to assess the π-electron delocalization to determine whether they sustain global ring currents associated with π aromaticity. The molecules show local ring currents in the presence of an external magnetic field. The ring currents flow diatropically in the stacked six-membered rings and in the helicene arms. However, these π currents are not interconnected due to the discontinuity of the π delocalization at the C-C single bonds connecting the central six-membered rings to the helicene arms. Electronic indices suggest that the helicene-arm systems have significantly smaller electron delocalization than benzene. The reduction in the delocalization does not compromise their ability to exhibit ring currents in the presence of an external magnetic field. The analysis provides further evidence that the magnetic criteria yield a different degree of aromaticity for the helicene arms than obtained in the calculation of the electronic aromaticity indices. However, both approaches confirm that the studied molecules are not globally aromatic.
本研究通过计算磁响应和电子芳香性指数,探究了双[5]并苯桥连的(1,4)环芳和三[5]并苯桥连的(1,3,5)环芳的芳香性。主要目的是评估π电子离域,以确定它们是否维持与π芳香性相关的全局环电流。这些分子在外部磁场存在下显示出局部环电流。环电流在堆叠的六元环和并苯臂中呈抗磁方向流动。然而,由于连接中心六元环与并苯臂的C-C单键处π离域的不连续性,这些π电流并未相互连接。电子指数表明,并苯臂体系的电子离域比苯小得多。离域的减少并不影响它们在外部磁场存在下表现出环电流的能力。该分析进一步证明,磁标准得出的并苯臂芳香性程度与电子芳香性指数计算结果不同。然而,两种方法都证实所研究的分子并非全局芳香性。