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Triplet State Baird Aromaticity in Macrocycles : Scope, Limitations, and Complications

Ayub, Rabia (författare)
Uppsala universitet,Syntetisk molekylär kemi
El Bakouri, Ouissam (författare)
Uppsala universitet,Syntetisk molekylär kemi
Smith, J. R. (författare)
Uppsala universitet,Syntetisk molekylär kemi,Humboldt State Univ, Dept Chem, Arcata, CA 95521 USA.
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Jorner, Kjell (författare)
Uppsala universitet,Syntetisk molekylär kemi
Ottosson, Henrik (författare)
Uppsala universitet,Syntetisk molekylär kemi
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 (creator_code:org_t)
2021-01-11
2021
Engelska.
Ingår i: Journal of Physical Chemistry A. - : American Chemical Society. - 1089-5639 .- 1520-5215. ; 125:2, s. 570-584
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • The aromaticity of cyclic 4nπ-electron molecules in their first ππ∗ triplet state (T1), labeled Baird aromaticity, has gained growing attention in the past decade. Here we explore computationally the limitations of T1 state Baird aromaticity in macrocyclic compounds, [n]CM's, which are cyclic oligomers of four different monocycles (M = p-phenylene (PP), 2,5-linked furan (FU), 1,4-linked cyclohexa-1,3-diene (CHD), and 1,4-linked cyclopentadiene (CPD)). We strive for conclusions that are general for various DFT functionals, although for macrocycles with up to 20 π-electrons in their main conjugation paths we find that for their T1 states single-point energies at both canonical UCCSD(T) and approximative DLPNO-UCCSD(T) levels are lowest when based on UB3LYP over UM06-2X and UCAM-B3LYP geometries. This finding is in contrast to what has earlier been observed for the electronic ground state of expanded porphyrins. Yet, irrespective of functional, macrocycles with 2,5-linked furans ([n]CFU's) retain Baird aromaticity until larger n than those composed of the other three monocycles. Also, when based on geometric, electronic and energetic aspects of aromaticity, a 3[n]CFU with a specific n is more strongly Baird-aromatic than the analogous 3[n]CPP while the magnetic indices tell the opposite. To construct large T1 state Baird-aromatic [n]CM's, the design should be such that the T1 state Baird aromaticity of the macrocyclic perimeter dominates over a situation with local closed-shell Hückel aromaticity of one or a few monocycles and semilocalized triplet diradical character. Monomers with lower Hückel aromaticity in S0 than benzene (e.g., furan) that do not impose steric congestion are preferred. Structural confinement imposed by, e.g., methylene bridges is also an approach to larger Baird-aromatic macrocycles. Finally, by using the Zilberg-Haas description of T1 state aromaticity, we reveal the analogy to the Hückel aromaticity of the corresponding closed-shell dications yet observe stronger Hückel aromaticity in the macrocyclic dications than Baird aromaticity in the T1 states of the neutral macrocycles. © 2021 The Authors.

Ämnesord

NATURVETENSKAP  -- Kemi -- Organisk kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences -- Organic Chemistry (hsv//eng)

Nyckelord

Aromatic compounds
Design for testability
Ground state
Organic pollutants
Electron molecules
Electronic ground state
Expanded porphyrins
Macrocyclic compounds
Magnetic indices
Neutral macrocycles
Single-point energy
Steric congestion
Aromatization

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Av författaren/redakt...
Ayub, Rabia
El Bakouri, Ouis ...
Smith, J. R.
Jorner, Kjell
Ottosson, Henrik
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NATURVETENSKAP
NATURVETENSKAP
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och Organisk kemi
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Journal of Physi ...
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RISE
Uppsala universitet

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