The control of shapes of nanocrystals is crucial for using them as building blocks for various applications. In this paper, we present a critical overview of the issues involved in shape-controlled synthesis of nanostructures. In particular, we focus on the mechanisms by which anisotropic structures of high-symmetry materials (fcc crystals, for instance) could be realized. Such structures require a symmetry-breaking mechanism to be operative that typically leads to selection of one of the facets/directions for growth over all the other symmetry-equivalent crystallographic facets. We show how this selection could arise for the growth of one-dimensional structures leading to ultrafine metal nanowires and for the case of two-dimensional nanost...
Most properties of nanocrystalline materials are shape-dependent, providing their exquisite tunabili...
Branched nanocrystals display interesting optical and catalytic properties on account of their high ...
International audienceIn this paper, we review recent progress on colloidal growth of 2D nanocrystal...
The control of shapes of nanocrystals is crucial for using them as building blocks for various appli...
The control of shapes of nanocrystals is crucial for using them as building blocks for various appli...
Symmetry plays a key role in dictating the equilibrium morphology of crystals. However, several grow...
Currently, most of the reported noble-metal nanocrystals are limited to a high level of symmetry, as...
We consider the development of ligand-assisted growth processes for generating shape-anisotropic nan...
The ability to predict the morphology of crystals formed by chemical reactions is of fundamental imp...
Understanding shape control during wet chemical synthesis is important for rational synthesis of nan...
CONSPECTUS: Inorganic nanocrystal design has been continuously evolving with a better understanding ...
Shape-control is used to tune the properties of metal nanostructures in applications ranging from ca...
The recognition of the strongly dimensionality-dependent physical-chemical properties of inorganic m...
peer-reviewedGrowing complex metallic crystals, supported high index facet nanocrystal composites an...
Controlled synthesis of noble metal nanocrystals has received enormous attention due to the ability ...
Most properties of nanocrystalline materials are shape-dependent, providing their exquisite tunabili...
Branched nanocrystals display interesting optical and catalytic properties on account of their high ...
International audienceIn this paper, we review recent progress on colloidal growth of 2D nanocrystal...
The control of shapes of nanocrystals is crucial for using them as building blocks for various appli...
The control of shapes of nanocrystals is crucial for using them as building blocks for various appli...
Symmetry plays a key role in dictating the equilibrium morphology of crystals. However, several grow...
Currently, most of the reported noble-metal nanocrystals are limited to a high level of symmetry, as...
We consider the development of ligand-assisted growth processes for generating shape-anisotropic nan...
The ability to predict the morphology of crystals formed by chemical reactions is of fundamental imp...
Understanding shape control during wet chemical synthesis is important for rational synthesis of nan...
CONSPECTUS: Inorganic nanocrystal design has been continuously evolving with a better understanding ...
Shape-control is used to tune the properties of metal nanostructures in applications ranging from ca...
The recognition of the strongly dimensionality-dependent physical-chemical properties of inorganic m...
peer-reviewedGrowing complex metallic crystals, supported high index facet nanocrystal composites an...
Controlled synthesis of noble metal nanocrystals has received enormous attention due to the ability ...
Most properties of nanocrystalline materials are shape-dependent, providing their exquisite tunabili...
Branched nanocrystals display interesting optical and catalytic properties on account of their high ...
International audienceIn this paper, we review recent progress on colloidal growth of 2D nanocrystal...