We present a sample environment for the investigation of nanoparticle self-assembly from a colloidal solution via controlled solvent evaporation using in situ small-angle X-ray scattering. Nanoparticles form ordered superlattices in the evaporative assembly along the X-ray transparent windows of a three-dimensional sample cell. The special design of the sample cell allows for monitoring the superlattice formation and transformation at different stages of the assembly process during the movement of the evaporation front in real time. The presented sample environment can be used to study the self-organization of a wide range of colloidal particles and other soft materials
Understanding the assembly of nanoparticles into superlattices with well-defined morphology and stru...
Understanding the assembly of nanoparticles into superlattices with well-defined morphology and stru...
Colloidal particles in a tiny drying droplet are forced to assemble due to attractive capillary forc...
We present a sample environment for the investigation of nanoparticle self-assembly from a colloidal...
Self‐assembled nanocrystal superlattices have attracted large scientific attention due to their pote...
Self‐assembled nanocrystal superlattices have attracted large scientific attention due to their pote...
International audienceSpontaneous ordering of nanoparticles (NPs) occurring as a consequence of solv...
International audienceSpontaneous ordering of nanoparticles (NPs) occurring as a consequence of solv...
International audienceSpontaneous ordering of nanoparticles (NPs) occurring as a consequence of solv...
International audienceSpontaneous ordering of nanoparticles (NPs) occurring as a consequence of solv...
The spontaneous self-assembly process of superparamagnetic nanoparticles in a fast-drying colloidal ...
During the self-organization of colloidal semiconductor nanoparticles by solvent evaporation, nanopa...
Understanding the assembly of nanoparticles into superlattices with well-defined morphology and stru...
During the self-organization of colloidal semiconductor nanoparticles by solvent evaporation, nanopa...
Colloidal particles in a tiny drying droplet are forced to assemble due to attractive capillary forc...
Understanding the assembly of nanoparticles into superlattices with well-defined morphology and stru...
Understanding the assembly of nanoparticles into superlattices with well-defined morphology and stru...
Colloidal particles in a tiny drying droplet are forced to assemble due to attractive capillary forc...
We present a sample environment for the investigation of nanoparticle self-assembly from a colloidal...
Self‐assembled nanocrystal superlattices have attracted large scientific attention due to their pote...
Self‐assembled nanocrystal superlattices have attracted large scientific attention due to their pote...
International audienceSpontaneous ordering of nanoparticles (NPs) occurring as a consequence of solv...
International audienceSpontaneous ordering of nanoparticles (NPs) occurring as a consequence of solv...
International audienceSpontaneous ordering of nanoparticles (NPs) occurring as a consequence of solv...
International audienceSpontaneous ordering of nanoparticles (NPs) occurring as a consequence of solv...
The spontaneous self-assembly process of superparamagnetic nanoparticles in a fast-drying colloidal ...
During the self-organization of colloidal semiconductor nanoparticles by solvent evaporation, nanopa...
Understanding the assembly of nanoparticles into superlattices with well-defined morphology and stru...
During the self-organization of colloidal semiconductor nanoparticles by solvent evaporation, nanopa...
Colloidal particles in a tiny drying droplet are forced to assemble due to attractive capillary forc...
Understanding the assembly of nanoparticles into superlattices with well-defined morphology and stru...
Understanding the assembly of nanoparticles into superlattices with well-defined morphology and stru...
Colloidal particles in a tiny drying droplet are forced to assemble due to attractive capillary forc...