Novel Switching Magnetic Materials: From Complexes to Hybrids
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In this doctoral thesis, novel synthetic methodologies are
established for obtaining bistable magnetic materials, including
spin crossover compounds and single ion magnets. These
insights have paved the way for designing and fabricating
graphene hybrids by incorporating switchable molecules via
covalent functionalization. A variety of physicochemical
techniques have been employed to precisely evaluate magnetostructural
correlations and identify functional groups on
graphene. These results open the route for a wider range of
applications involving barocalorics, data storage, or
spintronics, among others.
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Attribution-NonCommercial-NoDerivatives 4.0 Internacional







