Nanoparticle crystals or superlattices (SLs) are three dimensional arrangements of nanoparticles in the micrometre regime. In SLs, the particles are periodically arranged in a coherent long range order and hence they show collective properties. Various spectroscopic, scattering and imaging techniques have been used to understand the structure of self-assembled SLs. Extensive interest in particle SLs is due to the collective properties of the building blocks, which help us to understand the evolution in properties of organized structures. Controlling the assembly of such organized solids may open up new opportunities for fundamental studies as well as for engineering advanced materials with useful attributes. This review presents our efforts...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Individual nanoscale building blocks exhibit a wide range of size-dependent properties, since their ...
The correlation between the size of nanoparticles, the structure and shape of mesogenic ligands and ...
Metal nanoparticles of varying sizes can be prepared by physical as well as chemical methods. They e...
Self-assembly of nanoscale structures at liquid–solid interfaces occurs in a broad range of industri...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
Assembly of small building blocks such as atoms, molecules and nanoparticles into macroscopic struct...
Ordered metal nanoparticle assemblies—superlattices—have captivated and stirred the imagination of s...
Nanoparticle superlattices are periodic arrays of nanoscale inorganic building blocks including meta...
The assembly of plasmonic nanoparticles into ordered 2D- and 3D-superlattices could pave the way tow...
Fluorescent three-dimensional (3-D) superlattices of dansyl glutathione protected gold nanoparticles...
Metal nanoparticles exhibit physical and chemical properties that are unique from the bulk metal. Th...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Controlled self-assembly of nanoparticles into ordered structures is a major step to fabricating nan...
Abstract In this article, we review the state-of-the-art in the preparation and characterization of ...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Individual nanoscale building blocks exhibit a wide range of size-dependent properties, since their ...
The correlation between the size of nanoparticles, the structure and shape of mesogenic ligands and ...
Metal nanoparticles of varying sizes can be prepared by physical as well as chemical methods. They e...
Self-assembly of nanoscale structures at liquid–solid interfaces occurs in a broad range of industri...
Nanoparticles superlattices can be prepared by self assembly, under strict synthetic control, of hyb...
Assembly of small building blocks such as atoms, molecules and nanoparticles into macroscopic struct...
Ordered metal nanoparticle assemblies—superlattices—have captivated and stirred the imagination of s...
Nanoparticle superlattices are periodic arrays of nanoscale inorganic building blocks including meta...
The assembly of plasmonic nanoparticles into ordered 2D- and 3D-superlattices could pave the way tow...
Fluorescent three-dimensional (3-D) superlattices of dansyl glutathione protected gold nanoparticles...
Metal nanoparticles exhibit physical and chemical properties that are unique from the bulk metal. Th...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Controlled self-assembly of nanoparticles into ordered structures is a major step to fabricating nan...
Abstract In this article, we review the state-of-the-art in the preparation and characterization of ...
The colloidal nanocrystals (NCs) are nanometer-sized inorganic particles with distinctive properties...
Individual nanoscale building blocks exhibit a wide range of size-dependent properties, since their ...
The correlation between the size of nanoparticles, the structure and shape of mesogenic ligands and ...