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Odd-Number Cyclo[n]Carbons Sustaining Alternating Aromaticity

[Image: see text] Cyclo[n]carbons (n = 5, 7, 9, ..., 29) composed from an odd number of carbon atoms are studied computationally at density functional theory (DFT) and ab initio complete active space self-consistent field (CASSCF) levels of theory to get insight into their electronic structure and a...

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Autores principales: Baryshnikov, Glib V., Valiev, Rashid R., Valiulina, Lenara I., Kurtsevich, Alexandr E., Kurtén, Theo, Sundholm, Dage, Pittelkow, Michael, Zhang, Jinglai, Ågren, Hans
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059118/
https://www.ncbi.nlm.nih.gov/pubmed/35420813
http://dx.doi.org/10.1021/acs.jpca.1c08507
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author Baryshnikov, Glib V.
Valiev, Rashid R.
Valiulina, Lenara I.
Kurtsevich, Alexandr E.
Kurtén, Theo
Sundholm, Dage
Pittelkow, Michael
Zhang, Jinglai
Ågren, Hans
author_facet Baryshnikov, Glib V.
Valiev, Rashid R.
Valiulina, Lenara I.
Kurtsevich, Alexandr E.
Kurtén, Theo
Sundholm, Dage
Pittelkow, Michael
Zhang, Jinglai
Ågren, Hans
author_sort Baryshnikov, Glib V.
collection PubMed
description [Image: see text] Cyclo[n]carbons (n = 5, 7, 9, ..., 29) composed from an odd number of carbon atoms are studied computationally at density functional theory (DFT) and ab initio complete active space self-consistent field (CASSCF) levels of theory to get insight into their electronic structure and aromaticity. DFT calculations predict a strongly delocalized carbene structure of the cyclo[n]carbons and an aromatic character for all of them. In contrast, calculations at the CASSCF level yield geometrically bent and electronically localized carbene structures leading to an alternating double aromaticity of the odd-number cyclo[n]carbons. CASSCF calculations yield a singlet electronic ground state for the studied cyclo[n]carbons except for C(25), whereas at the DFT level the energy difference between the lowest singlet and triplet states depends on the employed functional. The BHandHLYP functional predicts a triplet ground state of the larger odd-number cyclo[n]carbons starting from n = 13. Current-density calculations at the BHandHLYP level using the CASSCF-optimized molecular structures show that there is a through-space delocalization in the cyclo[n]carbons. The current density avoids the carbene carbon atom, leading to an alternating double aromaticity of the odd-number cyclo[n]carbons satisfying the antiaromatic [4k+1] and aromatic [4k+3] rules. C(11), C(15), and C(19) are aromatic and can be prioritized in future synthesis. We predict a bond-shift phenomenon for the triplet state of the cyclo[n]carbons leading to resonance structures that have different reactivity toward dimerization.
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spelling pubmed-90591182022-05-03 Odd-Number Cyclo[n]Carbons Sustaining Alternating Aromaticity Baryshnikov, Glib V. Valiev, Rashid R. Valiulina, Lenara I. Kurtsevich, Alexandr E. Kurtén, Theo Sundholm, Dage Pittelkow, Michael Zhang, Jinglai Ågren, Hans J Phys Chem A [Image: see text] Cyclo[n]carbons (n = 5, 7, 9, ..., 29) composed from an odd number of carbon atoms are studied computationally at density functional theory (DFT) and ab initio complete active space self-consistent field (CASSCF) levels of theory to get insight into their electronic structure and aromaticity. DFT calculations predict a strongly delocalized carbene structure of the cyclo[n]carbons and an aromatic character for all of them. In contrast, calculations at the CASSCF level yield geometrically bent and electronically localized carbene structures leading to an alternating double aromaticity of the odd-number cyclo[n]carbons. CASSCF calculations yield a singlet electronic ground state for the studied cyclo[n]carbons except for C(25), whereas at the DFT level the energy difference between the lowest singlet and triplet states depends on the employed functional. The BHandHLYP functional predicts a triplet ground state of the larger odd-number cyclo[n]carbons starting from n = 13. Current-density calculations at the BHandHLYP level using the CASSCF-optimized molecular structures show that there is a through-space delocalization in the cyclo[n]carbons. The current density avoids the carbene carbon atom, leading to an alternating double aromaticity of the odd-number cyclo[n]carbons satisfying the antiaromatic [4k+1] and aromatic [4k+3] rules. C(11), C(15), and C(19) are aromatic and can be prioritized in future synthesis. We predict a bond-shift phenomenon for the triplet state of the cyclo[n]carbons leading to resonance structures that have different reactivity toward dimerization. American Chemical Society 2022-04-14 2022-04-28 /pmc/articles/PMC9059118/ /pubmed/35420813 http://dx.doi.org/10.1021/acs.jpca.1c08507 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Baryshnikov, Glib V.
Valiev, Rashid R.
Valiulina, Lenara I.
Kurtsevich, Alexandr E.
Kurtén, Theo
Sundholm, Dage
Pittelkow, Michael
Zhang, Jinglai
Ågren, Hans
Odd-Number Cyclo[n]Carbons Sustaining Alternating Aromaticity
title Odd-Number Cyclo[n]Carbons Sustaining Alternating Aromaticity
title_full Odd-Number Cyclo[n]Carbons Sustaining Alternating Aromaticity
title_fullStr Odd-Number Cyclo[n]Carbons Sustaining Alternating Aromaticity
title_full_unstemmed Odd-Number Cyclo[n]Carbons Sustaining Alternating Aromaticity
title_short Odd-Number Cyclo[n]Carbons Sustaining Alternating Aromaticity
title_sort odd-number cyclo[n]carbons sustaining alternating aromaticity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059118/
https://www.ncbi.nlm.nih.gov/pubmed/35420813
http://dx.doi.org/10.1021/acs.jpca.1c08507
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