International audiencePhotoexcitation of spin crossover (SCO) complexes can trigger extensive electronic spin transitions and transformation of molecular structure. However, the precise nature of the associated ultrafast structural dynamics remains elusive, especially in the solid state. Here, we studied a single-crystal SCO material with femtosecond electron diffraction (FED). The unique capability of FED allows us to directly probe atomic motions and to track ultrafast structural changes within a crystal lattice. By monitoring the time-dependent changes of the Bragg reflections, we observed the formation of a photoinduced structure similar to the thermally induced high-spin state. The data and refinement calculations indicate the global s...
Few photo-active molecules undergo a complete transformation of physical properties (magnetism, opti...
The thermally induced Spin-CrossOver (SCO) undergone by the mononuclear iron(ii) complex [Fe(PM-AzA)...
In molecular spin-crossover materials, the spin-state switching is strongly coupled with changes in ...
International audiencePhotoexcitation of spin crossover (SCO) complexes can trigger extensive electr...
Photoinduced spin transitions are studied by femtosecond electron diffraction to understand ultrafas...
International audienceTime-resolved studies with temporal resolution that separate molecular level d...
International audienceFast and ultra-fast time-resolved diffraction is a fantastic tool for directly...
International audienceWe study by 100 picosecond X-ray diffraction the photo-switching dynamics of s...
International audienceWe report the spin state photo-switching dynamics in two polymorphs of a spin-...
The atomic motions involved in spin crossover photo-switching dynamics of single crystal [Fe(PM-AzA)...
International audienceThe atomic motions involved in spin crossover photo-switching dynamics of sing...
Femtosecond spectroscopy and electron diffraction are used to characterize spin crossover in single ...
Spin crossover (SCO) complexes are prototypes of materials with bi- or multi-stability in the solid ...
Abstract Cooperative molecular switching at the solid state is exemplified by spin crossover phenome...
Few photo-active molecules undergo a complete transformation of physical properties (magnetism, opti...
The thermally induced Spin-CrossOver (SCO) undergone by the mononuclear iron(ii) complex [Fe(PM-AzA)...
In molecular spin-crossover materials, the spin-state switching is strongly coupled with changes in ...
International audiencePhotoexcitation of spin crossover (SCO) complexes can trigger extensive electr...
Photoinduced spin transitions are studied by femtosecond electron diffraction to understand ultrafas...
International audienceTime-resolved studies with temporal resolution that separate molecular level d...
International audienceFast and ultra-fast time-resolved diffraction is a fantastic tool for directly...
International audienceWe study by 100 picosecond X-ray diffraction the photo-switching dynamics of s...
International audienceWe report the spin state photo-switching dynamics in two polymorphs of a spin-...
The atomic motions involved in spin crossover photo-switching dynamics of single crystal [Fe(PM-AzA)...
International audienceThe atomic motions involved in spin crossover photo-switching dynamics of sing...
Femtosecond spectroscopy and electron diffraction are used to characterize spin crossover in single ...
Spin crossover (SCO) complexes are prototypes of materials with bi- or multi-stability in the solid ...
Abstract Cooperative molecular switching at the solid state is exemplified by spin crossover phenome...
Few photo-active molecules undergo a complete transformation of physical properties (magnetism, opti...
The thermally induced Spin-CrossOver (SCO) undergone by the mononuclear iron(ii) complex [Fe(PM-AzA)...
In molecular spin-crossover materials, the spin-state switching is strongly coupled with changes in ...