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New Carbenes and Cyclic Allenes Energetically Comparable to Experimentally Known 1-Azulenylcarbene

[Image: see text] 1-Azulenylcarbene (18; 0 kJ mol(–1)) is experimentally known as the key reactive intermediate for the rearrangement reactions of aryl carbenes in the laboratory. Here, using coupled-cluster methods up to the fc-CCSD(T)/cc-pVTZ//fc-CCSD(T)/cc-pVDZ level, thirteen new carbenes and on...

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Autores principales: Roy, Tarun, Thimmakondu, Venkatesan S., Ghosal, Subhas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9435053/
https://www.ncbi.nlm.nih.gov/pubmed/36061723
http://dx.doi.org/10.1021/acsomega.2c03224
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author Roy, Tarun
Thimmakondu, Venkatesan S.
Ghosal, Subhas
author_facet Roy, Tarun
Thimmakondu, Venkatesan S.
Ghosal, Subhas
author_sort Roy, Tarun
collection PubMed
description [Image: see text] 1-Azulenylcarbene (18; 0 kJ mol(–1)) is experimentally known as the key reactive intermediate for the rearrangement reactions of aryl carbenes in the laboratory. Here, using coupled-cluster methods up to the fc-CCSD(T)/cc-pVTZ//fc-CCSD(T)/cc-pVDZ level, thirteen new carbenes and one new cyclic allene are theoretically identified within the C(11)H(8) elemental composition that either energetically lie below or very close to 18. While the cyclic allene, bicyclo[5.4.0]undeca-2,3,5,7,9,11-hexene (1; −166 kJ mol(–1)), is the experimentally known lowest energy isomer, three other cyclic allenes, bicyclo[5.4.0]undeca-1,2,4,6,8,10-hexene (2; −100 kJ mol(–1)), bicyclo[5.4.0]undeca-1,3,4,6,8,10-hexene (3; −97 kJ mol(–1)), and bicyclo[6.3.0]undeca-1,2,4,6,8,10-hexene (13; −42 kJ mol(–1)), demand new experimental studies. In total, thirty-one isomers are studied in this work (within −166 to +15 kJ mol(–1) from 18) and all are found to be polar (μ ≠ 0). Among these, 1H-benzo[7]annulen-1-ylidene (17; −4 kJ mol(–1); μ = 5.24 D), bicyclo[5.4.0]undeca-2,4,6,8,11-pentaene-10-ylidene (24; 13 kJ mol(–1); μ = 7.59 D), 5-methylene-naphthalen-1-ylidene (26; 15 kJ mol(–1); μ = 5.32 D), 6-methylene-naphthalen-2-ylidene (27; −43 kJ mol(–1); μ = 6.60 D), and 8-methylene-naphthalen-2-ylidene (28; −39 kJ mol(–1); μ = 5.55 D) are competitively polar compared to 18 (μ = 5.39 D). Therefore, these carbene molecules are potential targets for rotational spectroscopists and radioastronomers. Considering the importance of naphthyl and azulenylcarbenes in reactive intermediate chemistry, mechanisms of different rearrangement reactions and plausible formation pathways of some of these new carbenes are studied in this work using density functional theory.
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spelling pubmed-94350532022-09-02 New Carbenes and Cyclic Allenes Energetically Comparable to Experimentally Known 1-Azulenylcarbene Roy, Tarun Thimmakondu, Venkatesan S. Ghosal, Subhas ACS Omega [Image: see text] 1-Azulenylcarbene (18; 0 kJ mol(–1)) is experimentally known as the key reactive intermediate for the rearrangement reactions of aryl carbenes in the laboratory. Here, using coupled-cluster methods up to the fc-CCSD(T)/cc-pVTZ//fc-CCSD(T)/cc-pVDZ level, thirteen new carbenes and one new cyclic allene are theoretically identified within the C(11)H(8) elemental composition that either energetically lie below or very close to 18. While the cyclic allene, bicyclo[5.4.0]undeca-2,3,5,7,9,11-hexene (1; −166 kJ mol(–1)), is the experimentally known lowest energy isomer, three other cyclic allenes, bicyclo[5.4.0]undeca-1,2,4,6,8,10-hexene (2; −100 kJ mol(–1)), bicyclo[5.4.0]undeca-1,3,4,6,8,10-hexene (3; −97 kJ mol(–1)), and bicyclo[6.3.0]undeca-1,2,4,6,8,10-hexene (13; −42 kJ mol(–1)), demand new experimental studies. In total, thirty-one isomers are studied in this work (within −166 to +15 kJ mol(–1) from 18) and all are found to be polar (μ ≠ 0). Among these, 1H-benzo[7]annulen-1-ylidene (17; −4 kJ mol(–1); μ = 5.24 D), bicyclo[5.4.0]undeca-2,4,6,8,11-pentaene-10-ylidene (24; 13 kJ mol(–1); μ = 7.59 D), 5-methylene-naphthalen-1-ylidene (26; 15 kJ mol(–1); μ = 5.32 D), 6-methylene-naphthalen-2-ylidene (27; −43 kJ mol(–1); μ = 6.60 D), and 8-methylene-naphthalen-2-ylidene (28; −39 kJ mol(–1); μ = 5.55 D) are competitively polar compared to 18 (μ = 5.39 D). Therefore, these carbene molecules are potential targets for rotational spectroscopists and radioastronomers. Considering the importance of naphthyl and azulenylcarbenes in reactive intermediate chemistry, mechanisms of different rearrangement reactions and plausible formation pathways of some of these new carbenes are studied in this work using density functional theory. American Chemical Society 2022-08-19 /pmc/articles/PMC9435053/ /pubmed/36061723 http://dx.doi.org/10.1021/acsomega.2c03224 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Roy, Tarun
Thimmakondu, Venkatesan S.
Ghosal, Subhas
New Carbenes and Cyclic Allenes Energetically Comparable to Experimentally Known 1-Azulenylcarbene
title New Carbenes and Cyclic Allenes Energetically Comparable to Experimentally Known 1-Azulenylcarbene
title_full New Carbenes and Cyclic Allenes Energetically Comparable to Experimentally Known 1-Azulenylcarbene
title_fullStr New Carbenes and Cyclic Allenes Energetically Comparable to Experimentally Known 1-Azulenylcarbene
title_full_unstemmed New Carbenes and Cyclic Allenes Energetically Comparable to Experimentally Known 1-Azulenylcarbene
title_short New Carbenes and Cyclic Allenes Energetically Comparable to Experimentally Known 1-Azulenylcarbene
title_sort new carbenes and cyclic allenes energetically comparable to experimentally known 1-azulenylcarbene
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9435053/
https://www.ncbi.nlm.nih.gov/pubmed/36061723
http://dx.doi.org/10.1021/acsomega.2c03224
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