Intermolecular interactions in solution: Elucidating the influence of the solvent
Robert W. Góra, Wojciech Bartkowiak, Szczepan Roszak, Jerzy Leszczyński
Abstract
Robert W. Góra, Wojciech Bartkowiak, Szczepan Roszak, Jerzy Leszczyński
Abstract
A new approach for the analysis of intermolecular interactions in a solution is proposed. The changes in the interaction energy components due to the solvent effects are estimated on the basis of the interaction energy calculated in the presence of the electric field induced in a polarizable medium, or in the field of the effective fragment potentials. Obtained results indicate a significant increase in stabilization resulting from electrostatic interactions as a result of the cooperative interactions between interacting subsystems and solvent molecules.
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A new approach for the analysis of intermolecular interactions in a solution is proposed. The changes in the interaction energy components due to the solvent effects are estimated on the basis of the interaction energy calculated in the presence of the electric field induced in a polarizable medium, or in the field of the effective fragment potentials. Obtained results indicate a significant increase in stabilization resulting from electrostatic interactions as a result of the cooperative interactions between interacting subsystems and solvent molecules.
Key concepts: Intermolecular force, Intermolecular interaction, Interaction energy, Polarizability, Solvent, Chemical physics, Molecule, Chemistry