Physical Chemistry Chemical Physics · 2021 · 19 citations · 84 references
EngineeringSpin State TransitionChemistryInorganic MaterialMagnetic MaterialsSpin StateMagnetismX-ray Photoemission SpectroscopyMaterials ScienceInorganic ChemistrySurface EffectsCrystallographySpintronicsFerromagnetismNatural SciencesPolymer ScienceIntermolecular InteractionsCoordination PolymerInorganic PolymerMetal Chain CompoundOrganic-inorganic Hybrid Material
From X-ray absorption spectroscopy (XAS) and X-ray photoemission spectroscopy (XPS), it is evident that the spin state transition behavior of Fe(II) spin crossover coordination polymer crystallites at the surface differs from the bulk. A comparison of four different coordination polymers reveals that the observed surface properties may differ from bulk for a variety of reasons. There are Fe(II) spin crossover coordination polymers with either almost complete switching of the spin state at the surface or no switching at all. Oxidation, differences in surface packing, and changes in coordination could all contribute to making the surface very different from the bulk. Some Fe(II) spin crossover coordination polymers may be sufficiently photoactive so that X-ray spectroscopies cannot discern the spin state transition.
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Light-induced spin-crossover magnet
Shin‐ichi Ohkoshi, Kenta Imoto, Yoshihide Tsunobuchi et al. · Nature Chemistry · 2011 · 548 citations
Magnetism, Spintronics, Light-induced Spin-crossover Magnet +9