Abstract
Although the unique cyclo[18]carbon (C18) realized by recent experiments has been greatly concerned, it has so far remained elusive. In contrast, its precursors C18-(CO)n (n = 6, 4, and 2), which can be separated stably, are of more practical significance. In this paper, the bonding character, electron delocalization, and aromaticity of the C18-(CO)n (n = 6, 4, and 2) with out-of-plane and in-plane dual π systems (πout and πin) perpendicular to each other are studied by combining quantum chemical calculations and wavefunction analyses. These cyclocarbon oxides exhibit alternating long and short C-C bonds and extensive electron delocalization, and a significant diatropic induced ring current under the action of external magnetic field is therefore observed, which reveals the aromatic characteristic in the molecules. The global electron delocalization and significant influence of the number of intramolecular carbonyl (-CO) on the two sets of π conjugated systems have been focused on, and the essential reason for the distinct difference in the overall aromaticity of the molecules was also clarified. It seems that the substituent -CO groups hinders the electron delocalization of the πin system but has relatively small effect on the πout system, resulting in the molecules with less -CO group showing greater aromaticity.
Supplementary materials
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Supporting Information
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Supplementary Materials
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Title
Induced_ring_current_C18-(CO)6
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The animation file of induced current for C18-(CO)6
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Induced_ring_current_C18-(CO)4
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The animation file of induced current for C18-(CO)4
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Induced_ring_current_C18-(CO)2
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The animation file of induced current for C18-(CO)2
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Supplementary weblinks
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An sp-hybridized all-carboatomic ring, cyclo[18]carbon: Bonding character, electron delocalization, and aromaticity
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An sp-hybridized all-carboatomic ring, cyclo[18]carbon: Bonding character, electron delocalization, and aromaticity
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An sp-hybridized all-carboatomic ring, cyclo[18]carbon: Electronic structure, electronic spectrum, and optical nonlinearity
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An sp-hybridized all-carboatomic ring, cyclo[18]carbon: Electronic structure, electronic spectrum, and optical nonlinearity
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Intermolecular interaction characteristics of the all-carboatomic ring, cyclo[18]carbon: Focusing on molecular adsorption and stacking
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Intermolecular interaction characteristics of the all-carboatomic ring, cyclo[18]carbon: Focusing on molecular adsorption and stacking
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Vibrational Spectra and Molecular Vibrational Behaviors of All-Carboatomic Rings, cyclo[18]carbon and Its Analogues
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Vibrational Spectra and Molecular Vibrational Behaviors of All-Carboatomic Rings, cyclo[18]carbon and Its Analogues
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Comment on “Theoretical investigation on bond and spectrum of cyclo[18]carbon (C18) with sp-hybridized”
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Comment on “Theoretical investigation on bond and spectrum of cyclo[18]carbon (C18) with sp-hybridized”
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Remarkable Size Effect on Photophysical and Nonlinear Optical Properties of All-Carboatomic Rings, Cyclo[18]carbon and Its Analogues
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Remarkable Size Effect on Photophysical and Nonlinear Optical Properties of All-Carboatomic Rings, Cyclo[18]carbon and Its Analogues
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Ultrastrong Regulation Effect of the Electric Field on the All-Carboatomic Ring Cyclo[18]Carbon
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Ultrastrong Regulation Effect of the Electric Field on the All-Carboatomic Ring Cyclo[18]Carbon
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