A new spin crossover complex based on a heteroscorpionate ligand was synthesized and characterized. Thin films were grown by sublimation in ultra-high vacuum on highly oriented pyrolytic graphite (HOPG) and on gold single crystal Au (111), and spectroscopically characterized through X-ray absorption and by X-ray photoemission. Temperature-dependent experiments on sub-nanometric deposits demonstrated that the thermally induced spin-crossover is preserved at a sub-monolayer (0.7 ML) coverage on HOPG, while deposits with similar thickness lose the switching behaviour on Au(111) surface. The system was unresponsive to light stimuli at low temperature indepently of the used substrate
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
Spin-state switching of transition-metal complexes (spin crossover) is sensitive to a variety of tin...
The electronic structure of the iron(II) spin crossover complex [Fe(H2bpz)2(phen)] deposited as an u...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
Thin films of an iron(ii) complex with a photochromic diarylethene-based ligand and featuring a spin...
International audienceUnderstanding the properties of spin-crossover molecules in direct contact wit...
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...
Temperature- and coverage-dependent studies of the Au(1 1 1)-supported spin crossover Fe(II) complex...
Cooperative effects determine the spin-state bistability of spin-crossover molecules (SCMs). Herein,...
Studies on the spin state switching characteristics of surface bound thin films of spin crossover S...
International audienceA thick film and a monolayer of tetrathiafulvalene-based Fe2+ spin-crossover c...
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
Using X-ray absorption techniques, we show that temperature- and light-induced spin crossover proper...
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
Spin-state switching of transition-metal complexes (spin crossover) is sensitive to a variety of tin...
The electronic structure of the iron(II) spin crossover complex [Fe(H2bpz)2(phen)] deposited as an u...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
Thin films of an iron(ii) complex with a photochromic diarylethene-based ligand and featuring a spin...
International audienceUnderstanding the properties of spin-crossover molecules in direct contact wit...
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...
Temperature- and coverage-dependent studies of the Au(1 1 1)-supported spin crossover Fe(II) complex...
Cooperative effects determine the spin-state bistability of spin-crossover molecules (SCMs). Herein,...
Studies on the spin state switching characteristics of surface bound thin films of spin crossover S...
International audienceA thick film and a monolayer of tetrathiafulvalene-based Fe2+ spin-crossover c...
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
Using X-ray absorption techniques, we show that temperature- and light-induced spin crossover proper...
Understanding and controlling the spin-crossover properties of molecular complexes can be of particu...
Spin-state switching of transition-metal complexes (spin crossover) is sensitive to a variety of tin...
The electronic structure of the iron(II) spin crossover complex [Fe(H2bpz)2(phen)] deposited as an u...