Binary mesocrystals offer the combination of nanocrystal properties in an ordered superstructure. Here, we demonstrate the simultaneous self-assembly of platinum and iron oxide nanocubes into micrometer-sized 3D mesocrystals using the gas-phase diffusion technique. By the addition of minor amounts of a secondary particle type tailored to nearly identical size, shape and surface chemistry, we were able to promote a random incorporation of foreign particles into a self-assembling host lattice. The random distribution of the binary particle types on the surface and within its bulk has been visualized using advanced transmission and scanning electron microscopy techniques. The 20-40 mu m sized binary mesocrystals have been further characterized...
Platinum nanoparticles are widely known for their numerous electrochemical and catalytic application...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
Self-assembly of nanoparticles is a widely used technique to produce nanostructured materials with c...
The focus of this work is centered around the development of artificially created nanostructures – c...
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...
New materials can be fabricated using small scaled building blocks as a repetition unit. Nanoparticl...
New materials can be fabricated using small scaled building blocks as a repetition unit. Nanoparticl...
The self-assembly of nanoparticles into highly ordered crystals is largely influenced by variations ...
The self-assembly of nanoparticles into highly ordered crystals is largely influenced by variations ...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
A precise control over the meso- and microstructure of ordered and aligned nanoparticle assemblies, ...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
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...
Platinum nanoparticles are widely known for their numerous electrochemical and catalytic application...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
Self-assembly of nanoparticles is a widely used technique to produce nanostructured materials with c...
The focus of this work is centered around the development of artificially created nanostructures – c...
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...
New materials can be fabricated using small scaled building blocks as a repetition unit. Nanoparticl...
New materials can be fabricated using small scaled building blocks as a repetition unit. Nanoparticl...
The self-assembly of nanoparticles into highly ordered crystals is largely influenced by variations ...
The self-assembly of nanoparticles into highly ordered crystals is largely influenced by variations ...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
A precise control over the meso- and microstructure of ordered and aligned nanoparticle assemblies, ...
Magnetic nanoparticles and their assembly in highly correlated structures are of great interest for ...
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...
Platinum nanoparticles are widely known for their numerous electrochemical and catalytic application...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
Self-assembly of nanoparticles is a widely used technique to produce nanostructured materials with c...