Publication | Open Access
Computational approach to the study of thermal spin crossover phenomena
70
Citations
82
References
2014
Year
EngineeringMagnetic ResonanceComputational ChemistryChemistrySpin DynamicComputational ApproachSpin PhenomenonMagnetismNumerical SimulationSpin TransitionThermal AnalysisThermodynamicsInorganic ChemistryPhysicsTransition TemperatureQuantum ChemistryHeat TransferKey ParametersQuantum MagnetismSpintronicsMolecule-based MagnetNatural SciencesApplied PhysicsCondensed Matter PhysicsThermal Engineering
The key parameters associated to the thermally induced spin crossover process have been calculated for a series of Fe(II) complexes with mono-, bi-, and tridentate ligands. Combination of density functional theory calculations for the geometries and for normal vibrational modes, and highly correlated wave function methods for the energies, allows us to accurately compute the entropy variation associated to the spin transition and the zero-point corrected energy difference between the low- and high-spin states. From these values, the transition temperature, T1/2, is estimated for different compounds.
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