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Insights on the Marcus Equation, Derived Coefficients and Spaces
Nery Villegas-Escobar1, Alejandro Toro-Labbé2
1Departamento de Fisico-Química, Facultad de Ciencias Químicas, Universidad de Concepción, Concepción 4070139, Chile.
None:
The dimensionless Marcus coefficients, β and γ, derived from the Marcus equation for activation free energy, are fundamentally connected to both reaction free energy and intrinsic activation free energy. Their introduction establishes a novel metric for classifying chemical reactions by defining reaction spaces that rationalize reactions based on the underlying energetic characteristics. This study extends beyond mere classification, introducing a comprehensive framework for representing chemical reactions within a parametric {β, γ} space, uniquely accommodating any reaction within a normalized range [0,1]. Through analysis of a data set comprising 5,269 dipolar [3 + 2] cycloaddition reactions, we demonstrate the framework's applicability, uncovering novel patterns and behaviors. These findings enhance the understanding of linear and quadratic free energy relationships, providing chemists with a powerful tool for reaction categorization and design, thereby advancing computational chemistry and reaction design methodologies.
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