about
P184
Probing a Device's Active Atoms.Engineering On-Surface Spin Crossover: Spin-State Switching in a Self-Assembled Film of Vacuum-Sublimable Functional Molecule.Exchange bias and room-temperature magnetic order in molecular layers.Hysteresis and change of transition temperature in thin films of Fe{[Me2Pyrz]3BH}2, a new sublimable spin-crossover molecule.Magnetic hysteresis in self-assembled monolayers of Dy-fullerene single molecule magnets on goldHysteresis enhancement on a hybrid Dy(iii) single molecule magnet/iron oxide nanoparticle systemNon-empirical calculation of X-ray magnetic circular dichroism in lanthanide compoundsSpin-Dependent Hybridization between Molecule and Metal at Room Temperature through Interlayer Exchange CouplingVersatile variable temperature insert at the DEIMOS beamline for in situ electrical transport measurementsLinking Electronic Transport through a Spin Crossover Thin Film to the Molecular Spin State Using X-ray Absorption Spectroscopy Operando TechniquesUnderstanding the Superior Stability of Single-Molecule Magnets on an Oxide FilmSubstrate-Independent Magnetic Bistability in Monolayers of the Single-Molecule Magnet Dy2 ScN@C80 on Metals and InsulatorsReversible coordination-induced spin-state switching in complexes on metal surfacesDirect Observation of Charge Transfer and Magnetism in Fe4Co4 Cyanide-Bridged Molecular Cubes
P50
Q46403895-03B16B4D-C52F-4175-8C56-41272B080A16Q48197397-4FE8A9F7-E61B-44BD-B32F-EA45AF362FF3Q53177910-B69E5A51-BCB5-45DC-BC2F-F32B13FC8362Q53496826-9D403EFE-B146-4DCB-9E66-10DEAB6E5B84Q59457050-E824F98B-3678-427D-B0F2-0E5C55E53AA1Q62097307-5A0DC68C-93A6-4A23-9F73-685C46F65783Q62600758-BAF86512-FDEF-43FB-8F8F-6452391E80D9Q86712679-9DE90B8B-B4C0-43D2-AA53-6BA86EC4731DQ89358630-F9998087-F3BF-4B25-A552-B80EEA14EF1DQ91096925-CD9947A5-B84F-40DB-A103-B8BC7F5531BDQ91429249-A51C2E40-90FB-4078-8336-402AE2E53363Q92150551-53BFF2C8-60D1-4ED0-8CA9-28BA0516F087Q92229811-DC4B329C-1F93-40DF-BB8D-83E05555F569Q92518934-E3AA8EF7-22F6-4FC9-A52D-3DCA11458425
P50
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0000-0003-0728-2920