Self-assembly of nanocrystals into functional materials requires precise control over nanoparticle interactions in solution that are dominated by organic ligands that densely cover the surface of nanocrystals. Recent experiments have demonstrated that small truncated-octahedral nanocrystals can self-assemble into a range of superstructures with different translational and orientational order of nanocrystals. The origin of this structural diversity remains unclear. Here, we use molecular dynamics computer simulations to study the self-assembly of these nanocrystals over a broad range of ligand lengths and solvent conditions. Our model, which is based on a coarse-grained description of ligands and solvent effects, reproduces the experimentall...
Self-assembly of nanoparticles (NPs) inside drying emulsion droplets provides a general strategy for...
The self-assembly of nanocrystals into ordered superlattices is a powerful strategy for the producti...
The self-assembly of shape-anisotropic nanocrystals into large-scale structures is a versatile and s...
Self-assembly of nanocrystals into functional materials requires precise control over nanoparticle i...
Self-assembly of nanocrystals into functional materials requires precise control over nanoparticle i...
Self-assembly of nanocrystals is a promising route for creating macroscale materials that derive fun...
Self-assembly of nanocrystals is a promising route for creating macroscale materials that derive fun...
Materials which are composed of long-range, ordered nanocrystals exhibit many potentially revolution...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Nanocrystalline solids have become the subject of intense study due to their unique optical properti...
We present a detailed analysis of the interaction between two nanocrystals capped with ligands consi...
The self-assembly of nanocrystals enables new classes of materials whose properties are controlled b...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Colloidal nanocrystals can self-assemble into highly ordered superlattices. Recent studies have focu...
The self-assembly of colloidal nanocrystals into ordered architectures has attracted significant int...
Self-assembly of nanoparticles (NPs) inside drying emulsion droplets provides a general strategy for...
The self-assembly of nanocrystals into ordered superlattices is a powerful strategy for the producti...
The self-assembly of shape-anisotropic nanocrystals into large-scale structures is a versatile and s...
Self-assembly of nanocrystals into functional materials requires precise control over nanoparticle i...
Self-assembly of nanocrystals into functional materials requires precise control over nanoparticle i...
Self-assembly of nanocrystals is a promising route for creating macroscale materials that derive fun...
Self-assembly of nanocrystals is a promising route for creating macroscale materials that derive fun...
Materials which are composed of long-range, ordered nanocrystals exhibit many potentially revolution...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Nanocrystalline solids have become the subject of intense study due to their unique optical properti...
We present a detailed analysis of the interaction between two nanocrystals capped with ligands consi...
The self-assembly of nanocrystals enables new classes of materials whose properties are controlled b...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Colloidal nanocrystals can self-assemble into highly ordered superlattices. Recent studies have focu...
The self-assembly of colloidal nanocrystals into ordered architectures has attracted significant int...
Self-assembly of nanoparticles (NPs) inside drying emulsion droplets provides a general strategy for...
The self-assembly of nanocrystals into ordered superlattices is a powerful strategy for the producti...
The self-assembly of shape-anisotropic nanocrystals into large-scale structures is a versatile and s...