The spin-crossover (SCO) materials based on iron (II) and triazole ligands can change their spin state under an external perturbation such as temperature, pressure or light irradiation, exhibiting notably large hysteresis in their physical properties’ transitions. If these aspects are investigated for decades, it is only in the recent years that the design of SCO particles has attracted the attention of the scientific community with increasing interest focusing on the possibility of getting wide ranges of sizes and shapes of nanoparticles. In this context, we rationalized the reverse-micellar synthesis, thanks to the scrutiny of the experimental parameters, to produce SCO particles with controlled size and shape. This approach has been perf...
Spin crossover iron(II) 1,2,4-triazole-based coordination compounds in the form of nanoparticles wer...
Spin crossover (SCO) iron (II) 1,2,4-triazole-based coordination compounds in the form of composite ...
The main aim of this following study is to control the size of spin crossover nanoparticles, and inv...
International audienceThe spin-crossover (SCO) materials based on iron (II) and triazole ligands can...
This paper describes the synthesis of iron(II) spin-crossover nanoparticles prepared by the reverse ...
Compounds that exhibit spin-crossover (SCO) type behavior have been extensively investigated due to ...
The shape and size of nanoparticles of the spin crossover compound [Fe(Htrz)2trz]BF4 obtained by the...
We have demonstrated that the reverse micelle technique can be applied to polymeric spin-crossover ...
Les matériaux à transition de spin (TS) à base de Fe(II) et de ligands triazolepeuvent changer d’éta...
The spin-crossover (SCO) materials based on iron (II) and triazole ligands canchange their spin stat...
Compounds that exhibit spin-crossover (SCO) type behavior have been extensively investigated due to ...
L'objet majeur de cette étude est de contrôler la taille de nanoparticules de matériaux à transition...
Pure and silica wrapped Fe(II)-triazole (FeHTrz) spin-crossover (SCO) nanoparticles have been prepar...
Microfluidics has become well established as the benchmark method of nanoparticle production but the...
Surfactant-free nanocrystals of the model spin-crossover compound [Fe(phen)<sub>2</sub>(NCS)<sub>2<...
Spin crossover iron(II) 1,2,4-triazole-based coordination compounds in the form of nanoparticles wer...
Spin crossover (SCO) iron (II) 1,2,4-triazole-based coordination compounds in the form of composite ...
The main aim of this following study is to control the size of spin crossover nanoparticles, and inv...
International audienceThe spin-crossover (SCO) materials based on iron (II) and triazole ligands can...
This paper describes the synthesis of iron(II) spin-crossover nanoparticles prepared by the reverse ...
Compounds that exhibit spin-crossover (SCO) type behavior have been extensively investigated due to ...
The shape and size of nanoparticles of the spin crossover compound [Fe(Htrz)2trz]BF4 obtained by the...
We have demonstrated that the reverse micelle technique can be applied to polymeric spin-crossover ...
Les matériaux à transition de spin (TS) à base de Fe(II) et de ligands triazolepeuvent changer d’éta...
The spin-crossover (SCO) materials based on iron (II) and triazole ligands canchange their spin stat...
Compounds that exhibit spin-crossover (SCO) type behavior have been extensively investigated due to ...
L'objet majeur de cette étude est de contrôler la taille de nanoparticules de matériaux à transition...
Pure and silica wrapped Fe(II)-triazole (FeHTrz) spin-crossover (SCO) nanoparticles have been prepar...
Microfluidics has become well established as the benchmark method of nanoparticle production but the...
Surfactant-free nanocrystals of the model spin-crossover compound [Fe(phen)<sub>2</sub>(NCS)<sub>2<...
Spin crossover iron(II) 1,2,4-triazole-based coordination compounds in the form of nanoparticles wer...
Spin crossover (SCO) iron (II) 1,2,4-triazole-based coordination compounds in the form of composite ...
The main aim of this following study is to control the size of spin crossover nanoparticles, and inv...