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Unexpected reversal of stability in strained systems containing one-electron bonds

Fantuzzi, Felipe, Wolff, Wania, Quitián-Lara, Heidy M., Boechat-Roberty, Heloisa M., Hilgers, Gerhard, Rudek, Benedikt, Nascimento, Marco A. C. (2019) Unexpected reversal of stability in strained systems containing one-electron bonds. Physical Chemistry Chemical Physics, 21 . pp. 24984-24992. ISSN 1463-9076. (doi:10.1039/C9CP04964A) (The full text of this publication is not currently available from this repository. You may be able to access a copy if URLs are provided) (KAR id:98563)

The full text of this publication is not currently available from this repository. You may be able to access a copy if URLs are provided. (Contact us about this Publication)
Official URL:
https://doi.org/10.1039/C9CP04964A

Abstract

Ring strain energy is a very well documented feature of neutral cycloalkanes, and influences their structural, thermochemical and reactivity properties. In this work, we apply density functional theory and high-level coupled cluster calculations to describe the geometry and relative stability of C6H12+˙ radical cations, whose cyclic isomers are prototypes of singly-charged cycloalkanes. Molecular ions with the mentioned stoichiometry were produced via electron impact experiments using a gaseous cyclohexane sample (20–2000 eV). From our calculations, in addition to structures that resemble linear and branched alkenes as well as distinct conformers of cyclohexane, we have found low-lying species containing three-, four- and five-membered rings with the presence of an elongated C–C bond. Remarkably, the stability trend of these ring-bearing radical cations is anomalous, and the three-membered species are up to 11.3 kcal mol−1 more stable than the six-membered chair structure. Generalized Valence Bond calculations and the Spin Coupled theory with N electrons and M orbitals were used in conjunction with the Generalized Product Function Energy Partitioning (GPF-EP) method and Interference Energy Analysis (IEA) to describe the chemical bonding in such moieties. Our results confirm that these elongated C–C motifs are one-electron sigma bonds. Our calculations also reveal the effects that drive thermochemical preference of strained systems over their strained-free isomers, and the origin of the unusual stability trend observed for cycloalkane radical cations.

Item Type: Article
DOI/Identification number: 10.1039/C9CP04964A
Divisions: Divisions > Division of Natural Sciences > Physics and Astronomy
Divisions > Division of Natural Sciences > Chemistry and Forensics
Funders: Coordenação de Aperfeicoamento de Pessoal de Nível Superior (https://ror.org/00x0ma614)
National Council for Scientific and Technological Development (https://ror.org/03swz6y49)
Alexander von Humboldt Foundation (https://ror.org/012kf4317)
Depositing User: Felipe Fantuzzi
Date Deposited: 30 Nov 2022 22:59 UTC
Last Modified: 05 Nov 2024 13:03 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/98563 (The current URI for this page, for reference purposes)

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