The arrangement of nanoscale building blocks into patterns with microscale periodicity is challenging to achieve via self-assembly processes. Here, we report on the phase-transition-driven collective assembly of gold nanoparticles in a thermotropic liquid crystal. A temperature-induced transition from the isotropic to the nematic phase under anchoring-driven planar alignment leads to the assembly of individual nanometer-sized particles into arrays of micrometer-sized agglomerates, whose size and characteristic spacing can be tuned by varying the cooling rate. Phase field simulations coupling the conserved and nonconserved order parameters exhibit a similar evolution of the morphology as the experimental observations. This fully reversible p...
Self-assembly attracts enormous research attention because it is at the core of important applicatio...
Rapid bulk assembly of nanoparticles into microstructures is challenging, but highly desir...
A current goal in nanotechnology focuses on the assembly of different nanoparticle types into 3D org...
The arrangement of nanoscale building blocks into patterns with microscale periodicity is challengin...
The self-assembly of nanoparticles by an anisotropic fluid allows for the study of fascinating pheno...
Semiconductor nanoparticles (NPs) are an emerging type of material with the potential to revolutioni...
Liquid crystals are materials that exhibit order between the one of solid crystalline and isotropic ...
open6sifirst published on 03 Dec 2015. Nome progetto: USAF – EOARD grant FA8655-11-1-3046We have st...
International audienceWe used oily streaks defects of smectic films, oriented by the underlying subs...
peer reviewedBy photopolymerizing liquid crystal shells, their rich variety of self-assembled struct...
We study the influence of nanoparticles (NPs) on liquid crystal (LC) ordering. As regards the struct...
Patterns of white light are projected on liquid crystal (LC) polymer films containing gold nanospher...
The molecular interactions driving the assembly of gold nanoparticles (AuNPs) in a nematic liquid cr...
A liquid metal filament supported on a dielectric substrate was directed to fragment into an ordered...
Dispersions of rodlike colloidal particles exhibit a plethora of liquid crystalline states, includin...
Self-assembly attracts enormous research attention because it is at the core of important applicatio...
Rapid bulk assembly of nanoparticles into microstructures is challenging, but highly desir...
A current goal in nanotechnology focuses on the assembly of different nanoparticle types into 3D org...
The arrangement of nanoscale building blocks into patterns with microscale periodicity is challengin...
The self-assembly of nanoparticles by an anisotropic fluid allows for the study of fascinating pheno...
Semiconductor nanoparticles (NPs) are an emerging type of material with the potential to revolutioni...
Liquid crystals are materials that exhibit order between the one of solid crystalline and isotropic ...
open6sifirst published on 03 Dec 2015. Nome progetto: USAF – EOARD grant FA8655-11-1-3046We have st...
International audienceWe used oily streaks defects of smectic films, oriented by the underlying subs...
peer reviewedBy photopolymerizing liquid crystal shells, their rich variety of self-assembled struct...
We study the influence of nanoparticles (NPs) on liquid crystal (LC) ordering. As regards the struct...
Patterns of white light are projected on liquid crystal (LC) polymer films containing gold nanospher...
The molecular interactions driving the assembly of gold nanoparticles (AuNPs) in a nematic liquid cr...
A liquid metal filament supported on a dielectric substrate was directed to fragment into an ordered...
Dispersions of rodlike colloidal particles exhibit a plethora of liquid crystalline states, includin...
Self-assembly attracts enormous research attention because it is at the core of important applicatio...
Rapid bulk assembly of nanoparticles into microstructures is challenging, but highly desir...
A current goal in nanotechnology focuses on the assembly of different nanoparticle types into 3D org...