Quantum dots are under intense research, given their amazing properties which favor their use in electronics, optoelectronics, energy, medicine and other important applications. For many of these technological applications, quantum dots are used in their ordered self-assembled form, called superlattice. Understanding the mechanism of formation of the superlattices is crucial to designing quantum dots devices with desired properties. Here we review some of the most important findings about the formation of such superlattices that have been derived using grazing incidence scattering techniques (grazing incidence small and wide angle X-ray scattering (GISAXS/GIWAXS)). Acquisition of these structural information is essential to developing some ...
A new method is realized for the growth of self-formed quantum dots. We identify that dislocation-fr...
Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors an...
The growth of GaN quantum dot multilayers embedded in an AlN matrix can be controlled using the Stra...
Quantum dots are under intense research, given their amazing properties which favor their use in ele...
This thesis addresses one of the major outstanding problems in the study of self-assembled InAs quan...
Nanocrystal quantum dots are novel materials of great scientific and technological interests. The at...
Organic capped Au nanoparticles (NPs) and PbS quantum dots (QDs), synthesized with high control on s...
The mechanism of self-organization of quantum dots (QDs) during the growth of InGaAs/GaAs multilayer...
The mechanism of self-organization of quantum dots (QDs) during the growth of InGaAs/GaAs multilayer...
We have investigated, by means of X-ray diffraction reciprocal space mapping and X-ray reflectivity,...
The heteroepitaxy of materials with a large lattice mismatch to the substrate is of special interest...
Abstract: Grazing incidence small angle X-ray scattering (GISAXS) and atomic force microscopy (AFM) ...
Anomalous small angle X-ray scattering (ASAXS) from the molecular beam epitaxially grown multilayers...
We have investigated, by means of X-ray diffraction reciprocal space mapping and X-ray reflectivity,...
In recent years, the field of self-assembled quantum dots has shown great promise for nanoscale appl...
A new method is realized for the growth of self-formed quantum dots. We identify that dislocation-fr...
Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors an...
The growth of GaN quantum dot multilayers embedded in an AlN matrix can be controlled using the Stra...
Quantum dots are under intense research, given their amazing properties which favor their use in ele...
This thesis addresses one of the major outstanding problems in the study of self-assembled InAs quan...
Nanocrystal quantum dots are novel materials of great scientific and technological interests. The at...
Organic capped Au nanoparticles (NPs) and PbS quantum dots (QDs), synthesized with high control on s...
The mechanism of self-organization of quantum dots (QDs) during the growth of InGaAs/GaAs multilayer...
The mechanism of self-organization of quantum dots (QDs) during the growth of InGaAs/GaAs multilayer...
We have investigated, by means of X-ray diffraction reciprocal space mapping and X-ray reflectivity,...
The heteroepitaxy of materials with a large lattice mismatch to the substrate is of special interest...
Abstract: Grazing incidence small angle X-ray scattering (GISAXS) and atomic force microscopy (AFM) ...
Anomalous small angle X-ray scattering (ASAXS) from the molecular beam epitaxially grown multilayers...
We have investigated, by means of X-ray diffraction reciprocal space mapping and X-ray reflectivity,...
In recent years, the field of self-assembled quantum dots has shown great promise for nanoscale appl...
A new method is realized for the growth of self-formed quantum dots. We identify that dislocation-fr...
Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors an...
The growth of GaN quantum dot multilayers embedded in an AlN matrix can be controlled using the Stra...