Thin films of a molecular spin crossover iron(II) complex featuring a photochromic diarylethene-based ligand have been grown by sublimation in ultra-high vacuum on an Au(111) single crystal, and investigated by X-ray and UV photoelectron spectroscopies. Temperature-dependent studies demonstrate that the thermally induced spin crossover behaviour is preserved in thin films. The photochromic ligand deliberately integrated into the complex allows photoswitching of the spin states of this iron(II) complex at room temperature, and this photomagnetic effect is still observed in 5 nm thick sublimated films. Thus, this work opens new horizons and pushes bistable spin crossover systems closer to prospective applications in molecular elect...
Molecules with a large local magnetic moment have attracted considerable attention for application i...
Spin crossover (SCO) molecules form a significant class of materials for which the magnetic structur...
We report on the vacuum thermal deposition of bilayer thin films of the luminescent complex Ir(ppy)3...
Thin films of a molecular spin crossover iron(II) complex featuring a photochromic diarylethene-bas...
International audienceThin films of a molecular spin crossover iron(II) complex featuring a photochr...
Thin films of an iron(II) complex with a photochromic diarylethene-based ligand and featuring a spin...
Thin films of an iron(ii) complex with a photochromic diarylethene-based ligand and featuring a spin...
Spin-crossover metal complexes are highly promising magnetic molecular switches for prospective mole...
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
The electronic structure of the iron(II) spin crossover complex [Fe(H2bpz)2(phen)] deposited as an u...
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
A photoisomerizable diarylethene-derived ligand, phen*, has been successfully introduced into a spin...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
International audienceThe Fe(II) spin crossover complex [Fe{H2 B(pz)2 }2 (bipy)] (pz = pyrazol-1-yl,...
Molecules with a large local magnetic moment have attracted considerable attention for application i...
Spin crossover (SCO) molecules form a significant class of materials for which the magnetic structur...
We report on the vacuum thermal deposition of bilayer thin films of the luminescent complex Ir(ppy)3...
Thin films of a molecular spin crossover iron(II) complex featuring a photochromic diarylethene-bas...
International audienceThin films of a molecular spin crossover iron(II) complex featuring a photochr...
Thin films of an iron(II) complex with a photochromic diarylethene-based ligand and featuring a spin...
Thin films of an iron(ii) complex with a photochromic diarylethene-based ligand and featuring a spin...
Spin-crossover metal complexes are highly promising magnetic molecular switches for prospective mole...
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
The electronic structure of the iron(II) spin crossover complex [Fe(H2bpz)2(phen)] deposited as an u...
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
A photoisomerizable diarylethene-derived ligand, phen*, has been successfully introduced into a spin...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
International audienceThe Fe(II) spin crossover complex [Fe{H2 B(pz)2 }2 (bipy)] (pz = pyrazol-1-yl,...
Molecules with a large local magnetic moment have attracted considerable attention for application i...
Spin crossover (SCO) molecules form a significant class of materials for which the magnetic structur...
We report on the vacuum thermal deposition of bilayer thin films of the luminescent complex Ir(ppy)3...