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双电荷[8]轮烯的芳香性。

Aromaticity of the doubly charged [8]circulenes.

作者信息

Baryshnikov Gleb V, Valiev Rashid R, Karaush Nataliya N, Sundholm Dage, Minaev Boris F

机构信息

Division of Theoretical Chemistry and Biology, School of Biotechnology, KTH Royal Institute of Technology, 10691 Stockholm, Sweden.

出版信息

Phys Chem Chem Phys. 2016 Apr 7;18(13):8980-92. doi: 10.1039/c6cp00365f. Epub 2016 Mar 11.

Abstract

Magnetically induced current densities and current pathways have been calculated for a series of fully annelated dicationic and dianionic tetraphenylenes, which are also named [8]circulenes. The gauge including magnetically induced current (GIMIC) method has been employed for calculating the current density susceptibilities. The aromatic character and current pathways are deduced from the calculated current density susceptibilities showing that the neutral [8]circulenes have two concentric pathways with aromatic and antiaromatic character, respectively. The inner octatetraene core (the hub) is found to sustain a paratropic (antiaromatic) ring current, whereas the ring current along the outer part of the macrocycle (the rim) is diatropic (aromatic). The neutral [8]circulenes can be considered nonaromatic, because the sum of the ring-current strengths of the hub and the rim almost vanishes. The aromatic character of the doubly charged [8]circulenes is completely different: the dianionic [8]circulenes and the OC-, CH-, CH2-, SiH-, GeH-, SiH2-, and GeH2-containing dicationic species sustain net diatropic ring currents i.e., they are aromatic, whereas the O-, S-, Se-, NH-, PH- and AsH-containing dicationic [8]circulenes are strongly antiaromatic. The present study also shows that GIMIC calculations on the [8]circulenes provide more accurate information about the aromatic character than that obtained using local indices such as nuclear-independent chemical shifts (NICSs) and (1)H NMR chemical shifts.

摘要

已针对一系列完全稠合的二价和二阴离子四苯并単(也称为[8]轮烯)计算了磁感应电流密度和电流路径。已采用包括磁感应电流(GIMIC)方法的规范来计算电流密度磁化率。从计算出的电流密度磁化率推导出芳香性和电流路径,结果表明中性[8]轮烯具有两条分别具有芳香性和反芳香性的同心路径。发现内部的八烯核心(中心)维持一个顺磁(反芳香)环电流,而沿着大环外部(边缘)的环电流是抗磁(芳香)的。中性[8]轮烯可被认为是非芳香性的,因为中心和边缘的环电流强度之和几乎为零。双电荷[8]轮烯的芳香性则完全不同:二阴离子[8]轮烯以及含OC-、CH-、CH2-、SiH-、GeH-、SiH2-和GeH2的二价物种维持净抗磁环电流,即它们是芳香性的,而含O-、S-、Se-、NH-、PH-和AsH的二价[8]轮烯则具有很强的反芳香性。本研究还表明,对[8]轮烯进行GIMIC计算比使用诸如核独立化学位移(NICS)和1H NMR化学位移等局部指标获得的信息能更准确地反映芳香性。

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