A major challenge in nanoparticle self-assembly is programming the large-area organization of a single type of anisotropic nanoparticle into distinct superlattices with tunable packing efficiencies. Here we utilize nanoscale surface chemistry to direct the self-assembly of silver octahedra into three distinct two-dimensional plasmonic superlattices at a liquid/liquid interface. Systematically tuning the surface wettability of silver octahedra leads to a continuous superlattice structural evolution, from close-packed to progressively open structures. Notably, silver octahedra standing on vertices arranged in a square lattice is observed using hydrophobic particles. Simulations reveal that this structural evolution arises from competing inter...
We report on a facile interfacial self-assembly approach to fabricate large-scale metal nanoparticle...
Understanding the structure and assembly of nanoparticles at liquid | liquid interfaces is paramount...
Au nanoparticles (NPs) self-assembled by means of a simple solvent evaporation strategy in a two-dim...
A major challenge in nanoparticle self-assembly is programming the large-area organization of a sing...
Understanding how polyhedra pack into extended arrangements is integral to the design and discovery ...
Silver nanocrystals are ideal building blocks for plasmonic materials that exhibit a wide range of ...
Ordered periodic arrays of metal nanoparticles, termed superlattices, are attracting increasing inte...
Shape-controlled polyhedral particles and their assembled structures have important applications in ...
Plasmonic supercrystals and periodically structured arrays comprise a class of materials with unique...
Building plamonic superlattice nanomembrane enables new class of two-dimensional (2D) optical metama...
Self-assembled nanoparticle (NP) arrays at liquid interfaces provide a unique optical response which...
The self-assembly of monodisperse inorganic nanoparticles into highly ordered arrays (superlattices)...
Understanding how polyhedra pack into extended arrangements is integral to the design and discovery ...
The integration of nanoparticle superstructures into daily life applications faces major challenges ...
Plasmonic supercrystals and periodically structured arrays comprise a class of materials with unique...
We report on a facile interfacial self-assembly approach to fabricate large-scale metal nanoparticle...
Understanding the structure and assembly of nanoparticles at liquid | liquid interfaces is paramount...
Au nanoparticles (NPs) self-assembled by means of a simple solvent evaporation strategy in a two-dim...
A major challenge in nanoparticle self-assembly is programming the large-area organization of a sing...
Understanding how polyhedra pack into extended arrangements is integral to the design and discovery ...
Silver nanocrystals are ideal building blocks for plasmonic materials that exhibit a wide range of ...
Ordered periodic arrays of metal nanoparticles, termed superlattices, are attracting increasing inte...
Shape-controlled polyhedral particles and their assembled structures have important applications in ...
Plasmonic supercrystals and periodically structured arrays comprise a class of materials with unique...
Building plamonic superlattice nanomembrane enables new class of two-dimensional (2D) optical metama...
Self-assembled nanoparticle (NP) arrays at liquid interfaces provide a unique optical response which...
The self-assembly of monodisperse inorganic nanoparticles into highly ordered arrays (superlattices)...
Understanding how polyhedra pack into extended arrangements is integral to the design and discovery ...
The integration of nanoparticle superstructures into daily life applications faces major challenges ...
Plasmonic supercrystals and periodically structured arrays comprise a class of materials with unique...
We report on a facile interfacial self-assembly approach to fabricate large-scale metal nanoparticle...
Understanding the structure and assembly of nanoparticles at liquid | liquid interfaces is paramount...
Au nanoparticles (NPs) self-assembled by means of a simple solvent evaporation strategy in a two-dim...