Molecular interactions from the density functional theory for chemical reactivity: interaction chemical potential, hardness, and reactivity principles
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2022Metadata
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Miranda Quintana, Ramón Alain
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Molecular interactions from the density functional theory for chemical reactivity: interaction chemical potential, hardness, and reactivity principles
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Abstract
In the first paper of this series, the authors derived an expression for the
interaction energy between two reagents in terms of the chemical reactivity
indicators that can be derived from density functional perturbation theory.
While negative interaction energies can explain reactivity, reactivity is often
more simply explained using the “|dμ| big is good” rule or the maximum
hardness principle. Expressions for the change in chemical potential (μ) and
hardness when two reagents interact are derived. A partial justification for the
maximum hardness principle is that the terms that appear in the interaction
energy expression often reappear in the expression for the interaction hardness,
but with opposite sign.
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Canada Research Chairs
CGIAR
Natural Sciences and Engineering Research Council of Canada (NSERC)
Compute Canada
United States Department of Energy (DOE) DE-SC0001011
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT FONDECYT 1220366
University of Florida
Centers of Excellence
Basal-Conicyt Financing FB0807
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Artículo de publícación WoS Artículo de publicación SCOPUS
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Chem. 10:929464 (2022)
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