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A density functional study of the spin state energetics of polypyrazolylborato complexes of first-row transition metals
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Citations
73
References
2014
Year
EngineeringTheoretical Inorganic ChemistryComputational ChemistryChemistrySpin DynamicPolypyrazolylborato ComplexesSpin PhenomenonJt DistortionMaterials ScienceInorganic ChemistryDensity Functional StudyPhysicsSpin State EnergeticsPhysical ChemistryQuantum ChemistrySpintronicsNatural SciencesCoordination ComplexMolecular ComplexCoordination Polymer
Density Functional Theory (DFT) was used to analyse and explain spin state energetics of first-row transition metals (MnII, FeII, CoII; CrIII, MnIII, FeIII, CoIII; MnIV) in polypyrazolylborato complexes. We explored the effects of substitutions at the 3 and 5 positions of the pyrazolyl rings, as well as the influence of Jahn–Teller (JT) distortions on spin-state switching. Although the stabilizations due to JT distortion are sometimes substantial, this does not lead to switching of the spin ground-state. On the other hand, electron withdrawing or donating substituents do lead to significant changes in the spin-crossover (SCO) properties of the investigated complexes.
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