Using self-assembly, nanoscale materials can be fabricated from the bottom up. Opals and inverse opals are examples of self-assembled nanomaterials made from crystallizing colloidal particles. As self-assembly requires a high level of control, it is challenging to use building blocks with anisotropic geometry to form complex opals, which limits the realizable structures. Typically, spherical colloids are employed as building blocks, leading to symmetric, isotropic superstructures. However, a significantly richer palette of directionally dependent properties are expected if less symmetric, anisotropic structures can be created, especially originating from the assembly of regular, spherical particles. Here we show a simple method to introduce...
Inorganic microstructured materials are ubiquitous in nature. However, their formation in artificial...
We demonstrate a facile method of fabricating opal and inverse opal structures with a planar defect....
Self-assembly of artificial opals has garnered significant interest as a facile nanofabrication tech...
Using self-assembly, nanoscale materials can be fabricated from the bottom up. Opals and inverse opa...
Using self-assembly, nanoscale materials can be fabricated from the bottom up. Opals and inverse opa...
Controlling nano to microscale structuration enables one to alter a material’s optical, wetting, mec...
Whereas considerable interest exists in self-assembly of well-ordered, porous “inverse opal” structu...
Colloidal particles can assemble into ordered crystals, creating periodically structured materials a...
We report an improved convective self-assembly method for the fabrication of highly ordered, crack-f...
Colloidal self-assembly holds promise for photonic applications as a solution-based, low-cost altern...
ConspectusInverse opals (IOs) are highly interconnected three-dimensional macroporous structures wit...
Porous materials display interesting transport phenomena due to the restricted motion of fluids with...
We present a reproducible, one-pot colloidal co-assembly approach that results in large-scale, highl...
This research is focused on the fabrication of optically active three-dimensional (3D) ordered nanos...
Porous materials display interesting transport phenomena due to the restricted motion of fluids with...
Inorganic microstructured materials are ubiquitous in nature. However, their formation in artificial...
We demonstrate a facile method of fabricating opal and inverse opal structures with a planar defect....
Self-assembly of artificial opals has garnered significant interest as a facile nanofabrication tech...
Using self-assembly, nanoscale materials can be fabricated from the bottom up. Opals and inverse opa...
Using self-assembly, nanoscale materials can be fabricated from the bottom up. Opals and inverse opa...
Controlling nano to microscale structuration enables one to alter a material’s optical, wetting, mec...
Whereas considerable interest exists in self-assembly of well-ordered, porous “inverse opal” structu...
Colloidal particles can assemble into ordered crystals, creating periodically structured materials a...
We report an improved convective self-assembly method for the fabrication of highly ordered, crack-f...
Colloidal self-assembly holds promise for photonic applications as a solution-based, low-cost altern...
ConspectusInverse opals (IOs) are highly interconnected three-dimensional macroporous structures wit...
Porous materials display interesting transport phenomena due to the restricted motion of fluids with...
We present a reproducible, one-pot colloidal co-assembly approach that results in large-scale, highl...
This research is focused on the fabrication of optically active three-dimensional (3D) ordered nanos...
Porous materials display interesting transport phenomena due to the restricted motion of fluids with...
Inorganic microstructured materials are ubiquitous in nature. However, their formation in artificial...
We demonstrate a facile method of fabricating opal and inverse opal structures with a planar defect....
Self-assembly of artificial opals has garnered significant interest as a facile nanofabrication tech...