The crystallization of nanomaterials is a primary source of solid-state, photonic structures. Thus, a detailed understanding of this process is of paramount importance for the successful application of photonic nanomaterials in emerging optoelectronic technologies. While colloidal crystallization has been thoroughly studied, for example, with advanced in situ electron microscopy methods, the noncolloidal crystallization (freezing) of nanoparticles (NPs) remains so far unexplored. To fill this gap, in this work, we present proof-of-principle experiments decoding a crystallization of reconfigurable assemblies of NPs at a solid state. The chosen material corresponds to an excellent testing bed, as it enables both in situ and ex situ investigat...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
This article reviews the advancements and prospects of liquid cell transmission electron microscopy ...
Microscale and nanoscale colloidal particle self-assembly is widely studied to establish the design ...
The crystallization of nanomaterials is a primary source of solid-state, photonic structures. Thus, ...
We report the reversible formation of crystals of nanoparticles (opals) from solutions of polydisper...
Seeded crystallization and solidification in nanoscale confinement volumes have become an important ...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Understanding the dynamics of discrete self-assembled structures under influence of external trigger...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
Controlled self-assembly of nanoparticles into ordered structures is a major step to fabricating nan...
Growth of three-dimensional (3D) photonic crystals is most interesting research in new and enhancing...
Using colloids effectively confined in two dimensions by a cell with a thickness comparable to the p...
Self-organization in anisotropic colloidal suspensions leads to a fascinating range of crystal and l...
The assembly of plasmonic nanoparticles into ordered 2D- and 3D-superlattices could pave the way tow...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
This article reviews the advancements and prospects of liquid cell transmission electron microscopy ...
Microscale and nanoscale colloidal particle self-assembly is widely studied to establish the design ...
The crystallization of nanomaterials is a primary source of solid-state, photonic structures. Thus, ...
We report the reversible formation of crystals of nanoparticles (opals) from solutions of polydisper...
Seeded crystallization and solidification in nanoscale confinement volumes have become an important ...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Understanding the dynamics of discrete self-assembled structures under influence of external trigger...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
Controlled self-assembly of nanoparticles into ordered structures is a major step to fabricating nan...
Growth of three-dimensional (3D) photonic crystals is most interesting research in new and enhancing...
Using colloids effectively confined in two dimensions by a cell with a thickness comparable to the p...
Self-organization in anisotropic colloidal suspensions leads to a fascinating range of crystal and l...
The assembly of plasmonic nanoparticles into ordered 2D- and 3D-superlattices could pave the way tow...
Colloidal nanoparticle assembly methods can serve as ideal models to explore the fundamentals of hom...
This article reviews the advancements and prospects of liquid cell transmission electron microscopy ...
Microscale and nanoscale colloidal particle self-assembly is widely studied to establish the design ...