Insights into the Variations of Kinetic and Potential Energies in a Multi-Bond Reaction: The Reaction Electronic Flux Perspective

28 May 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

The debate over whether kinetic energy (KE) or potential energy (PE) are the fundamental energy components that contribute to forming covalent bonds has been enduring and stimulating over time. However, the supremacy of these energy components in reactions where multiple bonds are simultaneously formed or broken has yet to be explored. In this study, we use the reaction electronic flux (REF), an effective tool for investigating changes in driving electronic activity when bond formation or dissociation occurs in a chemical reaction, to examine the fluctuations in the KE and PE in a multi-bond reaction. To that end, the activation of CO2 by low valent group 14 catalysts through a concerted σ-bond metathesis mechanism is analyzed. The findings of this preliminary study suggest that the REF can be utilized as a tool to rationalize alterations in the KE and PE in a multi-band reaction. Specifically, analyses across the reaction coordinate reveal that changes in the KE and PE precede activation in the REF, stimulating the electronic activity where bond formation or dissociation processes dominate.

Keywords

kinetic energy
potential energy
multibond reaction

Supplementary materials

Title
Description
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Title
Supporting Information: Insights into the Variations of Kinetic and Potential Energies in a Multi-Bond Reaction: The Reaction Electronic Flux Perspective
Description
Activation and reaction energies from IRC computations, together with Mayer bond orders for all reactions, are in the Supplementary Information.
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