Modulating Escape Channels of Cycloheptatrienyl Rhodium Carbenes to Form Semibullvalene

05 April 2023, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

We report the various escape channels available to dirhodium carbene intermediates from cycloheptatrienyl diazo compounds with density functional theory. An intramolecular cyclopropanation would, in principle, provide a new route to semibullvalenes. A full exploration of the potential energy surface reveals that methylating carbon-7 suppresses a competing β-hydride migration pathway to heptafulvene products, giving semibullvalene formation a reasonable chance. During our explorations, we additionally discovered unusual spirononatriene, spironorcaradiene, and metal-stabilized 9-barbaralyl cation structures as local minima.

Keywords

semibullvalene
transition-metal catalysis
density functional theory
rhodium-carbene
fluxional molecules
barbaralyl cation

Supplementary materials

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Supporting Information
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Supporting Data and Figures; Energies and Frequencies of Computed Structures (PDF). A data set collection of computational results, including geometries and structure coordinates, is available in the ioChem-BD repository and can be accessed via https://iochembd. bsc.es/browse/handle/100/216065
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