Publication | Closed Access
On the Importance of the Dispersion Energy for the Thermodynamic Stability of Molecules
215
Citations
31
References
2011
Year
EngineeringComputational ChemistryChemistryDispersionThermodynamicsThermodynamic StabilityEquilibrium Thermodynamic PropertyMolecular KineticsThermodynamic EquilibriumBiophysicsPhysicsDispersion EnergyMolecular MaterialPhysical ChemistryComputational DataQuantum ChemistryLarger MoleculesEntropyNatural SciencesEquilibrium ThermodynamicsIntramolecular Dispersion Energy
Action at a distance: By comparing computational data with a large body of experimental data it is shown that larger molecules are significantly more influenced by intramolecular dispersion energy than smaller ones. Because dispersion is always attractive (energy-lowering) this means that larger molecules are thermodynamically stabilized by dispersion compared to small systems (see graph).
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