Binary colloidal films of polystyrene (PS) spheres and silica spheres were fabricated with a sequential growth method using differently sized colloidal particles. In particular, we demonstrate the structures formed by a silica monolayer growing on top of a PS monolayer and a silica multilayer growing on top of a PS monolayer. By removal of the bottom PS layers, non-close-packed hexagonal, pentagonal, and square silica arrays were obtained at the original silica/PS interface. The possible formation mechanism of the non-close-packed structure was discussed, which may be used to explain how 3D colloidal crystals grow on patterned substrates
We report an improved convective self-assembly method for the fabrication of highly ordered, crack-f...
We report the formation of colloidal polymers consisting of disk-like silica nanoparticles (NPs) wit...
Hexagonally ordered arrays of polystyrene (PS) microspheres were prepared by a modified air-water se...
We developed a simple and general approach for constructing a wafer-scale monolayer, close-packed po...
Nanotechnology and nanoparticles have emerged as an important tool towards improving engineering fab...
Face-centered cubic (fcc) (111)-orientated twodimensional (2D) and three-dimensional (3D) crack-free...
Colloidal crystals are highly ordered materials that possess a periodically dielectric constant. Due...
Self-assembly of different sized colloidal particles into multicomponent crystals results in novel m...
Colloidal crystals are highly ordered materials that possess a periodically dielectric constant. Due...
We have statistically characterized the self-assembly of multi-layer polystyrene colloidal crys-tals...
Colloidal crystals are highly ordered materials that possess a periodically dielectric constant. Due...
Flexible structural design and accurate controlled fabrication with structural tunability according ...
We have statistically characterized the self-assembly of multi-layer polystyrene colloidal crys-tals...
Various FCC structured colloid crystals were fabricated using polystyrene (PS) as blocking units by ...
Colloidal crystal films have been fabricated on solid substrates with a horizontal deposition method...
We report an improved convective self-assembly method for the fabrication of highly ordered, crack-f...
We report the formation of colloidal polymers consisting of disk-like silica nanoparticles (NPs) wit...
Hexagonally ordered arrays of polystyrene (PS) microspheres were prepared by a modified air-water se...
We developed a simple and general approach for constructing a wafer-scale monolayer, close-packed po...
Nanotechnology and nanoparticles have emerged as an important tool towards improving engineering fab...
Face-centered cubic (fcc) (111)-orientated twodimensional (2D) and three-dimensional (3D) crack-free...
Colloidal crystals are highly ordered materials that possess a periodically dielectric constant. Due...
Self-assembly of different sized colloidal particles into multicomponent crystals results in novel m...
Colloidal crystals are highly ordered materials that possess a periodically dielectric constant. Due...
We have statistically characterized the self-assembly of multi-layer polystyrene colloidal crys-tals...
Colloidal crystals are highly ordered materials that possess a periodically dielectric constant. Due...
Flexible structural design and accurate controlled fabrication with structural tunability according ...
We have statistically characterized the self-assembly of multi-layer polystyrene colloidal crys-tals...
Various FCC structured colloid crystals were fabricated using polystyrene (PS) as blocking units by ...
Colloidal crystal films have been fabricated on solid substrates with a horizontal deposition method...
We report an improved convective self-assembly method for the fabrication of highly ordered, crack-f...
We report the formation of colloidal polymers consisting of disk-like silica nanoparticles (NPs) wit...
Hexagonally ordered arrays of polystyrene (PS) microspheres were prepared by a modified air-water se...