International audienceIn this paper, we review recent progress on colloidal growth of 2D nanocrystals. We identify the four main sources of anisotropy which lead to the formation of plate- and sheet-like colloidal nanomaterials. Defect-induced anisotropy is a growth method which relies on the presence of topological defects at the nanoscale to induce 2D shapes objects. Such a method is particularly important in the growth of metallic nano-objects. Another way to induce anisotropy is based on ligand engineering. The availability of some nanocrystal facets can be tuned by selectively covering the surface with ligands of tunable thickness. Cadmium chalcogenides nanoplatelets (NPLs) strongly rely on this method which offers atomic control in th...
Since the size, shape, and microstructure of nanocrystalline materials strongly impact physical and ...
Colloidal nanocrystals are crystalline materials of nanometer size which are colloidally suspended i...
2D semiconductor quantum wells have been recognized as potential candidates for various quantum devi...
Due to the spatial confinement, two-dimensional metal chalcogenides display an extraordinary optical...
CONSPECTUS: Inorganic nanocrystal design has been continuously evolving with a better understanding ...
The synthesis of anisotropic nanocrystals such as nanorods, nanowires, nanotubes, and nanodisks is o...
Colloidal inorganic nanocrystals are versatile nanoscale building blocks. Advances in their synthesi...
Building heterostructures of colloidal nanocrystals by bringing different components into contact ca...
In the last two decades, the field of nanoscience and nanotechnology has witnessed tremendous advan...
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...
A method of synthesizing colloidal nanocrystals is disclosed using metal oxides or metal salts as a ...
This thesis summarizes the results of 20 original publications which are covering three closely conn...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
Research on ultrathin nanomaterials is one of the fastest developing areas in contemporary nanoscien...
Since the size, shape, and microstructure of nanocrystalline materials strongly impact physical and ...
Colloidal nanocrystals are crystalline materials of nanometer size which are colloidally suspended i...
2D semiconductor quantum wells have been recognized as potential candidates for various quantum devi...
Due to the spatial confinement, two-dimensional metal chalcogenides display an extraordinary optical...
CONSPECTUS: Inorganic nanocrystal design has been continuously evolving with a better understanding ...
The synthesis of anisotropic nanocrystals such as nanorods, nanowires, nanotubes, and nanodisks is o...
Colloidal inorganic nanocrystals are versatile nanoscale building blocks. Advances in their synthesi...
Building heterostructures of colloidal nanocrystals by bringing different components into contact ca...
In the last two decades, the field of nanoscience and nanotechnology has witnessed tremendous advan...
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...
A method of synthesizing colloidal nanocrystals is disclosed using metal oxides or metal salts as a ...
This thesis summarizes the results of 20 original publications which are covering three closely conn...
Colloidal semiconductor and metal nanocyrstals receive attention from studying their physical proper...
Research on ultrathin nanomaterials is one of the fastest developing areas in contemporary nanoscien...
Since the size, shape, and microstructure of nanocrystalline materials strongly impact physical and ...
Colloidal nanocrystals are crystalline materials of nanometer size which are colloidally suspended i...
2D semiconductor quantum wells have been recognized as potential candidates for various quantum devi...