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Updated: Feb 6, 2026

Study of Protein Dynamics via Neutron Spin Echo Spectroscopy
Published on: April 13, 2022
Linking Electronic Transport through a Spin Crossover Thin Film to the Molecular Spin State Using X-ray Absorption
Filip Schleicher1,2, Michał Studniarek1, Kuppusamy Senthil Kumar1
1IPCMS, UMR 7504 CNRS, Université de Strasbourg , 23 Rue du Loess, BP 43 , 67034 Strasbourg Cedex 2, France.
Abstract:
One promising route toward encoding information is to utilize the two stable electronic states of a spin crossover molecule. Although this property is clearly manifested in transport across single molecule junctions, evidence linking charge transport across a solid-state device to the molecular film's spin state has thus far remained indirect. To establish this link, we deploy materials-centric and device-centric operando experiments involving X-ray absorption spectroscopy. We find a correlation between the temperature dependencies of the junction resistance and the Fe spin state within the device's [Fe(H2B(pz)2)2(NH2-phen)] molecular film. We also factually observe that the Fe molecular site mediates charge transport. Our dual operando studies reveal that transport involves a subset of molecules within an electronically heterogeneous spin crossover film. Our work confers an insight that substantially improves the state-of-the-art regarding spin crossover-based devices, thanks to a methodology that can benefit device studies of other next-generation molecular compounds.
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