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偶数环[]碳(= 6 - 100)的芳香性

Aromaticity of Even-Number Cyclo[]carbons ( = 6-100).

作者信息

Baryshnikov Glib V, Valiev Rashid R, Nasibullin Rinat T, Sundholm Dage, Kurten Theo, Ågren Hans

机构信息

Department of Physics and Astronomy, Uppsala University, Box 516, Uppsala SE-751 20, Sweden.

Department of Chemistry and Nanomaterials Science, Bohdan Khmelnytsky National University, Cherkasy 18031, Ukraine.

出版信息

J Phys Chem A. 2020 Dec 24;124(51):10849-10855. doi: 10.1021/acs.jpca.0c09692. Epub 2020 Dec 10.

Abstract

The recently synthesized cyclo[18]carbon molecule has been characterized in a number of studies by calculating electronic, spectroscopic, and mechanical properties. However, cyclo[18]carbon is only one member of the class of cyclo[]carbons-standalone carbon allotrope representatives. Many of the larger members of this class of molecules have not been thoroughly investigated. In this work, we calculate the magnetically induced current density of cyclo[]carbons in order to elucidate how electron delocalization and aromatic properties change with the size of the molecular ring (), where is an even number between 6 and 100. We find that the Hückel rules for aromaticity (4 + 2) and antiaromaticity (4) become degenerate for large C rings ( > 50), which can be understood as a transition from a delocalized electronic structure to a nonaromatic structure with localized current density fluxes in the triple bonds. Actually, the calculations suggest that cyclo[]carbons with > 50 are nonaromatic cyclic polyalkynes. The influence of the amount of nonlocal exchange and the asymptotic behavior of the exchange-correlation potential of the employed density functionals on the strength of the magnetically induced ring current and the aromatic character of the large cyclo[]carbons is also discussed.

摘要

最近合成的环[18]碳分子已在多项研究中通过计算电子、光谱和力学性质进行了表征。然而,环[18]碳只是环[]碳类——独立碳同素异形体代表中的一个成员。这类分子中许多较大的成员尚未得到充分研究。在这项工作中,我们计算了环[]碳的磁感应电流密度,以阐明电子离域和芳香性如何随分子环大小()变化,其中为6到100之间的偶数。我们发现,对于大的碳环(>50),芳香性(4n+2)和反芳香性(4n)的休克尔规则变得简并,这可以理解为从离域电子结构到三键中具有局域电流密度通量的非芳香结构的转变。实际上,计算表明,>50的环[]碳是非芳香性环状聚炔。还讨论了非局域交换量以及所采用密度泛函的交换相关势的渐近行为对大的环[]碳的磁感应环电流强度和芳香性的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b66/7770816/eb5834772834/jp0c09692_0002.jpg

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