Self-assembly of nanoparticles is a widely used technique to produce nanostructured materials with crystallographic coherence on the atomic scale, i.e. mesocrystals, which can display useful collective properties. This thesis focusses on the underlying mechanism and dynamics of mesocrystal formation by using real-time techniques. Quartz-crystal microbalance with dissipation monitoring (QCM-D) as well as small-angle X-ray scattering (SAXS) in combination with optical microscopy were used to probe the temporal evolution of growing mesocrystals to elucidate the growth mechanism. Time-resolved small-angle X-ray scattering was used to probe the formation and how the structure and defects of the growing mesocrystals in levitating droplets evolve ...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
This letter describes the formation and detailed characterization of iron oxide mesocrystals produce...
The self-assembly of nanoparticles into highly ordered crystals is largely influenced by variations ...
Self-assembly of nanoparticles is a promising route to form complex, nanostructured materials with f...
Self-assembly of nanoparticles is a promising route to form complex, nanostructured materials with f...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
A precise control over the meso- and microstructure of ordered and aligned nanoparticle assemblies, ...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
We have studied the growth of ordered arrays by evaporation-induced self-assembly of iron oxide nano...
Mesocrystals composed of crystallographically aligned nanocrystals are present in biominerals and as...
Mesocrystals composed of crystallographically aligned nanocrystals are present in biominerals and as...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
This thesis is focused on the fabrication and characterization of self-assembled arrays of magnetic ...
This thesis is focused on the fabrication and characterization of self-assembled arrays of magnetic ...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
This letter describes the formation and detailed characterization of iron oxide mesocrystals produce...
The self-assembly of nanoparticles into highly ordered crystals is largely influenced by variations ...
Self-assembly of nanoparticles is a promising route to form complex, nanostructured materials with f...
Self-assembly of nanoparticles is a promising route to form complex, nanostructured materials with f...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
A precise control over the meso- and microstructure of ordered and aligned nanoparticle assemblies, ...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
We have studied the growth of ordered arrays by evaporation-induced self-assembly of iron oxide nano...
Mesocrystals composed of crystallographically aligned nanocrystals are present in biominerals and as...
Mesocrystals composed of crystallographically aligned nanocrystals are present in biominerals and as...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
This thesis is focused on the fabrication and characterization of self-assembled arrays of magnetic ...
This thesis is focused on the fabrication and characterization of self-assembled arrays of magnetic ...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
This letter describes the formation and detailed characterization of iron oxide mesocrystals produce...
The self-assembly of nanoparticles into highly ordered crystals is largely influenced by variations ...