» Articles » PMID: 34745540

Visualizing Electron Delocalization in Contorted Polycyclic Aromatic Hydrocarbons

Overview
Journal Chem Sci
Specialty Chemistry
Date 2021 Nov 8
PMID 34745540
Citations 4
Authors
Affiliations
Soon will be listed here.
Abstract

Electron delocalization in contorted polycyclic aromatic hydrocarbon (PAH) molecules was examined through 3D isotropic magnetic shielding (IMS) contour maps built around the molecules using pseudo-van der Waals surfaces. The resulting maps of electron delocalization provided an intuitive, yet detailed and quantitative evaluation of the aromatic, non aromatic, and antiaromatic character of the local and global conjugated cyclic circuits distributed over the molecules. An attractive pictural feature of the 3D IMS contour maps is that they are reminiscent of the Clar π-sextet model of aromaticity. The difference in delocalization patterns between the two faces of the electron circuits in contorted PAHs was clearly visualized. For π-extended contorted PAHs, some splits of the π system resulted in recognizable patterns typical of smaller PAHs. The differences between the delocalization patterns of diastereomeric chiral PAHs could also be visualized. Mapping IMS on pseudo-van der Waals surfaces around contorted PAHs allowed visualization of their superimposed preferred circuits for electron delocalization and hence their local and global aromaticity patterns.

Citing Articles

Heptacyclic aromatic hydrocarbon isomers with two azulene units fused.

Guo J, Du F, Yu B, Du P, Li H, Zhang J Chem Sci. 2024; 15(31):12589-12597.

PMID: 39118621 PMC: 11304730. DOI: 10.1039/d4sc02566k.


NIR-II photothermal conversion and imaging based on a cocrystal containing twisted components.

Li T, Liu J, Liu E, Liu B, Wang J, Liao P Chem Sci. 2024; 15(5):1692-1699.

PMID: 38303953 PMC: 10829014. DOI: 10.1039/d3sc03532h.


π-Extended benzo[1,2:4,5]di[7]annulene bis(dicarboximide)s - a new class of non-alternant polycyclic aromatic dicarboximides.

Spengler J, Zhu C, Shoyama K, Wurthner F Chem Sci. 2023; 14(39):10861-10866.

PMID: 37829012 PMC: 10566470. DOI: 10.1039/d3sc04015a.


Gas-phase preparation of azulene (CH) and naphthalene (CH) the reaction of the resonantly stabilized fulvenallenyl and propargyl radicals.

Li W, Yang J, Zhao L, Couch D, Marchi M, Hansen N Chem Sci. 2023; 14(36):9795-9805.

PMID: 37736626 PMC: 10510771. DOI: 10.1039/d3sc03231k.

References
1.
Castro-Fernandez S, Cruz C, Mariz I, Marquez I, Jimenez V, Palomino-Ruiz L . Two-Photon Absorption Enhancement by the Inclusion of a Tropone Ring in Distorted Nanographene Ribbons. Angew Chem Int Ed Engl. 2020; 59(18):7139-7145. DOI: 10.1002/anie.202000105. View

2.
Feixas F, Matito E, Poater J, Sola M . Quantifying aromaticity with electron delocalisation measures. Chem Soc Rev. 2015; 44(18):6434-51. DOI: 10.1039/c5cs00066a. View

3.
Fujikawa T, Segawa Y, Itami K . Synthesis, Structures, and Properties of π-Extended Double Helicene: A Combination of Planar and Nonplanar π-Systems. J Am Chem Soc. 2015; 137(24):7763-8. DOI: 10.1021/jacs.5b03118. View

4.
Monaco G, Zanasi R . Analysis of the Nucleus-Independent Chemical Shifts of [10]Cyclophenacene: Is It an Aromatic or Antiaromatic Molecule?. J Phys Chem Lett. 2017; 8(19):4673-4678. DOI: 10.1021/acs.jpclett.7b01937. View

5.
Gershoni-Poranne R, Stanger A . Magnetic criteria of aromaticity. Chem Soc Rev. 2015; 44(18):6597-615. DOI: 10.1039/c5cs00114e. View