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RESEARCH PRODUCT
Enantioselective Guest Effect on the Spin State of a Chiral Coordination Framework
Olesia I. KucherivSergii I. ShylinSergii I. ShylinIgor O. FritskyIl'ya A. Gural'skiyIl'ya A. Gural'skiyR. A. PoluninVadim Ksenofontovsubject
Spin statesChemistryStereochemistryCoordination polymerOrganic ChemistryEnantioselective synthesisSpin transitionGeneral ChemistryCatalysisCrystallographychemistry.chemical_compoundSpin crossoverDiamagnetismMoleculeChirality (chemistry)description
The diversity of spin crossover (SCO) complexes that, on the one hand, display variable temperature, abruptness and hysteresis of the spin transition, and on the other hand, are spin-sensitive to the various guest molecules, makes these materials unique for the detection of different organic and inorganic compounds. We have developed a homochiral SCO coordination polymer with a spin transition sensitive to the inclusion of the guest 2-butanol, and these solvates with (R)- and (S)-alcohols demonstrate different SCO behaviours depending on the chirality of the organic analyte. A stereoselective response to the guest inclusion is detected as a shift in the temperature of the transition both from dia- to para- and from para- to diamagnetic states in heating and cooling modes respectively. Furthermore, the Mössbauer spectroscopy directly visualizes how the metallic centres in a chiral coordination framework differently sense the interaction with guests of different chiralities.
year | journal | country | edition | language |
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2015-08-26 | Chemistry - A European Journal |