Self-assembly processes, while promising for enabling the fabrication of complexly organized nanomaterials from nanoparticles, are often limited in creating structures with multiscale order. These limitations are due to difficulties in practically realizing the assembly processes required to achieve such complex organizations. For a long time, a hierarchical assembly attracted interest as a potentially powerful approach. However, due to the experimental limitations, intermediate-level structures are often heterogeneous in composition and structure, which significantly impacts the formation of large-scale organizations. Here, we introduce a two-stage assembly strategy: DNA origami frames scaffold a coordination of nanoparticles into designed...
The exploitation of new methods to control material structure has historically been dominating the m...
The quest for the by-design assembly of material and devices from nanoscale inorganic components is ...
Scaffolded DNA origami has proven to be a versatile method for generating functional nanostructures ...
The science of self-assembly has undergone a radical shift from asking questions about why individua...
Three-dimensional mesoscale clusters that are formed from nanoparticles spatially arranged in pre-de...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
Organization of spherical particles into lattices is typically driven by packing considerations. Alt...
The rational design of anisotropic interaction patterns is a key step for programming colloid and na...
Self-assembly of molecular units into complex and functional superstructures is ubiquitous in biolog...
Self-assembly of molecular units into complex and functional superstructures is ubiquitous in biolog...
Self-assembly of molecular units into complex and functional superstructures is ubiquitous in biolog...
3D crystals assembled entirely from DNA provide a route to design materials on a molecular level and...
Fabrication of plasmonic metamolecules (PMs) with rationally designed complexity is one of the major...
3D crystals assembled entirely from DNA provide a route to design materials on a molecular level and...
The exploitation of new methods to control material structure has historically been dominating the m...
The quest for the by-design assembly of material and devices from nanoscale inorganic components is ...
Scaffolded DNA origami has proven to be a versatile method for generating functional nanostructures ...
The science of self-assembly has undergone a radical shift from asking questions about why individua...
Three-dimensional mesoscale clusters that are formed from nanoparticles spatially arranged in pre-de...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
The arrangements of metal nanoparticles into spatially ordered structures is still challenging, but ...
Organization of spherical particles into lattices is typically driven by packing considerations. Alt...
The rational design of anisotropic interaction patterns is a key step for programming colloid and na...
Self-assembly of molecular units into complex and functional superstructures is ubiquitous in biolog...
Self-assembly of molecular units into complex and functional superstructures is ubiquitous in biolog...
Self-assembly of molecular units into complex and functional superstructures is ubiquitous in biolog...
3D crystals assembled entirely from DNA provide a route to design materials on a molecular level and...
Fabrication of plasmonic metamolecules (PMs) with rationally designed complexity is one of the major...
3D crystals assembled entirely from DNA provide a route to design materials on a molecular level and...
The exploitation of new methods to control material structure has historically been dominating the m...
The quest for the by-design assembly of material and devices from nanoscale inorganic components is ...
Scaffolded DNA origami has proven to be a versatile method for generating functional nanostructures ...