Self-assembly of inorganic nanoparticles has been used to prepare hundreds of different colloidal crystals, but almost invariably with the restriction that the particles must be densely packed. Here, we show that non–close-packed nanoparticle arrays can be fabricated through the selective removal of one of two components comprising binary nanoparticle superlattices. First, a variety of binary nanoparticle superlattices were prepared at the liquid-air interface, including several arrangements that were previously unknown. Molecular dynamics simulations revealed the particular role of the liquid in templating the formation of superlattices not achievable through self-assembly in bulk solution. Second, upon stabilization, all of these binary s...
Nanoparticle superlattices consisting of densely packed particles with periodic arrangements can exh...
New technologies call for the development of new materials. One new type of material with exciting e...
Body centered tetragonal (BCT) phases are structural intermediates between body centered cubic (BCC)...
Assembly of small building blocks such as atoms, molecules and nanoparticles into macroscopic struct...
Surface-patterning colloidal matter in the sub-10 nm regime generates exceptional functionality in b...
Colloidal self-assembly predominantly results in lattices that are either: (1) fixed in the solid st...
The self-assembly of two sizes of spherical nanocrystals has revealed a surprisingly diverse library...
Self-assembled binary nanocrystal superlattices (BNSLs) represent a versatile bottom-up approach tow...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Colloidal crystallisation is the only way to obtain three-dimensional ordered materials in which sem...
The realization of non-close-packed nanoscale patterns with multiple feature sizes and length scales...
The self-assembly of binary nanoparticle superlattices from colloidal mixtures is a promising method...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
Self-assembly of multicomponent anisotropic nanocrystals with controlled orientation and spatial dis...
Multicomponent nanocrystal superlattices represent an interesting class of material that derives eme...
Nanoparticle superlattices consisting of densely packed particles with periodic arrangements can exh...
New technologies call for the development of new materials. One new type of material with exciting e...
Body centered tetragonal (BCT) phases are structural intermediates between body centered cubic (BCC)...
Assembly of small building blocks such as atoms, molecules and nanoparticles into macroscopic struct...
Surface-patterning colloidal matter in the sub-10 nm regime generates exceptional functionality in b...
Colloidal self-assembly predominantly results in lattices that are either: (1) fixed in the solid st...
The self-assembly of two sizes of spherical nanocrystals has revealed a surprisingly diverse library...
Self-assembled binary nanocrystal superlattices (BNSLs) represent a versatile bottom-up approach tow...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Colloidal crystallisation is the only way to obtain three-dimensional ordered materials in which sem...
The realization of non-close-packed nanoscale patterns with multiple feature sizes and length scales...
The self-assembly of binary nanoparticle superlattices from colloidal mixtures is a promising method...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
Self-assembly of multicomponent anisotropic nanocrystals with controlled orientation and spatial dis...
Multicomponent nanocrystal superlattices represent an interesting class of material that derives eme...
Nanoparticle superlattices consisting of densely packed particles with periodic arrangements can exh...
New technologies call for the development of new materials. One new type of material with exciting e...
Body centered tetragonal (BCT) phases are structural intermediates between body centered cubic (BCC)...