Assembly of nanoparticles is a promising route to fabricate devices from nanomaterials. Colloidal crystals are well-defined three-dimensional assemblies of nanoparticles with long-range ordered structures and crystalline symmetries. Here, we use a solvent evaporation induced assembly method to obtain colloidal crystals composed of polyhedral sodium rare earth fluoride nanoparticles. The building blocks exhibit the same crystalline orientation in each colloidal crystal as indicated in electron diffraction patterns. The driving force of the oriented assembly is ascribed to the facet-selected capping of oleic acid molecules on {110} facets of the nanoparticles, and the favorable coordination behavior of OA molecules is explained by the steric ...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
New technologies call for the development of new materials. One new type of material with exciting e...
Metal nanoparticles exhibit physical and chemical properties that are unique from the bulk metal. Th...
| openaire: EC/FP7/291364/EU//MIMEFUNSelf-assembly of colloidal building blocks, like metal nanopart...
Colloidal nanocrystals are the ideal building blocks for the fabrication of functional materials. Us...
Colloidal inorganic nanocrystals are versatile nanoscale building blocks. Advances in their synthesi...
International audienceSelf-assembly of colloidal nanoparticles into higher order superstructures is ...
Colloidal metal nanoparticles are emerging as key materials for catalysis, plasmonics, sensing, and ...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Assembling nanoparticles into secondary structures not only allows the combination of properties of ...
Colloidal crystals are 3D nanostructures formed by self assembly of nanoparticles in suspension. The...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Self-assembly of nanocrystals into functional materials requires precise control over nanoparticle i...
International audienceNanoparticles (NPs) can now be synthesized with a wide array of controlled siz...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
New technologies call for the development of new materials. One new type of material with exciting e...
Metal nanoparticles exhibit physical and chemical properties that are unique from the bulk metal. Th...
| openaire: EC/FP7/291364/EU//MIMEFUNSelf-assembly of colloidal building blocks, like metal nanopart...
Colloidal nanocrystals are the ideal building blocks for the fabrication of functional materials. Us...
Colloidal inorganic nanocrystals are versatile nanoscale building blocks. Advances in their synthesi...
International audienceSelf-assembly of colloidal nanoparticles into higher order superstructures is ...
Colloidal metal nanoparticles are emerging as key materials for catalysis, plasmonics, sensing, and ...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Assembling nanoparticles into secondary structures not only allows the combination of properties of ...
Colloidal crystals are 3D nanostructures formed by self assembly of nanoparticles in suspension. The...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Self-assembly of nanocrystals into functional materials requires precise control over nanoparticle i...
International audienceNanoparticles (NPs) can now be synthesized with a wide array of controlled siz...
Rare-earth nanocrystals (RE NCs) bring the distinct optical, magnetic, and catalytic properties of b...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
New technologies call for the development of new materials. One new type of material with exciting e...