2D nonclose-packed colloidal crystal patterns have received considerable attention in various fields, but it remains a challenge to fabricate patterns and manipulate their geometries regardless of substrate types and structures. Herein, a simple approach is developed for producing nonclose-packed hydrogel colloidal crystalline patterns on flat and periodically micropatterned substrates by exposing close-packed colloidal crystal monolayers to salt aqueous solutions. The patterns are achievable on flat surfaces like silicon, glass, graphene, poly(ethylene terephthalate), and poly(dimethyl siloxane) surfaces. Hydrogel colloidal spheres can deform into disk-like or hemispherical particles on different material substrates. The colloid geometries...
The structuring of polymers on the micro and nanoscale is performed largely by lithographic techniqu...
Site-selective growth of colloidal crystals with photonic properties on chemically patterned surface...
Face-centered cubic (fcc) (111)-orientated twodimensional (2D) and three-dimensional (3D) crack-free...
ABSTRACT: Surface patterns with prescribed structures and properties are highly desirable for a vari...
Monolayer colloidal crystals are formed using silica- and polystyrene beads and used as etch masks f...
Surface patterns with prescribed structures and properties are highly desirable for a variety of app...
AbstractMonolayer colloidal crystals are formed using silica- and polystyrene beads and used as etch...
Patterning of many types of biomolecules over length scales ranging from micrometers to nanometers i...
Patterning of colloidal photonic crystals (CPCs) has been strongly investigated in recent years for ...
International audienceWe propose a novel versatile colloidal crystal transfer technique compatible w...
International audienceWe propose a novel versatile colloidal crystal transfer technique compatible w...
Here, we report a simple colloidal transfer technology that enables scalable fabrication of monolaye...
A method for fabricating gel-immobilized colloidal crystal spheres using microfluidics is reported. ...
International audienceWe propose a novel versatile colloidal crystal transfer technique compatible w...
International audienceWe propose a novel versatile colloidal crystal transfer technique compatible w...
The structuring of polymers on the micro and nanoscale is performed largely by lithographic techniqu...
Site-selective growth of colloidal crystals with photonic properties on chemically patterned surface...
Face-centered cubic (fcc) (111)-orientated twodimensional (2D) and three-dimensional (3D) crack-free...
ABSTRACT: Surface patterns with prescribed structures and properties are highly desirable for a vari...
Monolayer colloidal crystals are formed using silica- and polystyrene beads and used as etch masks f...
Surface patterns with prescribed structures and properties are highly desirable for a variety of app...
AbstractMonolayer colloidal crystals are formed using silica- and polystyrene beads and used as etch...
Patterning of many types of biomolecules over length scales ranging from micrometers to nanometers i...
Patterning of colloidal photonic crystals (CPCs) has been strongly investigated in recent years for ...
International audienceWe propose a novel versatile colloidal crystal transfer technique compatible w...
International audienceWe propose a novel versatile colloidal crystal transfer technique compatible w...
Here, we report a simple colloidal transfer technology that enables scalable fabrication of monolaye...
A method for fabricating gel-immobilized colloidal crystal spheres using microfluidics is reported. ...
International audienceWe propose a novel versatile colloidal crystal transfer technique compatible w...
International audienceWe propose a novel versatile colloidal crystal transfer technique compatible w...
The structuring of polymers on the micro and nanoscale is performed largely by lithographic techniqu...
Site-selective growth of colloidal crystals with photonic properties on chemically patterned surface...
Face-centered cubic (fcc) (111)-orientated twodimensional (2D) and three-dimensional (3D) crack-free...