We have developed a novel technology, called nanoparticle conversion, for producing compound semiconductor quantum dots (QDs) in which the dot size, surface density, position, and the materials system are all independently controlled. Nanoparticle conversion also lends itself to spatially controlled positioning of QDs. To demonstrate this technology we report the formation of InP QDs using nanoparticle conversion. We have produced QDs on substrates of different types by converting randomly and lithographically positioned nanoparticles into compound semiconductors in a chemical vapour deposition system. Electron microscopy and atomic force microscopy measurements reveal that the morphology of these QDs is similar to that of QDs produced by o...
Breakthroughs in nanomaterials and nanoscience enable the development of novel photonic devices and ...
Practical strategies of utilizing typical semiconducting materials with size smaller than the excito...
Quantum dots (QDs) are nanoscale semiconductor crystals that possess special characteristics, and th...
We have developed a novel technology, called nanoparticle conversion, for producing compound semicon...
AbstractAn atomic-force microscope assisted technique is developed to control the position and size ...
Quantum dots are spherical nano-sized crystals. They can be made of nearly every semiconductor met-a...
Quantum dots (QDs) today belong to the central research objects of many scientific groups. The study...
The quantum dot (QD) is defined as an artificially structured system with the capacity to load elect...
Semiconductor nanocrystals are particles of nanometer size whose physico-chemical properties depend ...
Semiconductor nanocrystals known as quantum dots (QDs) are spherical particles comprising from some ...
Semiconductor quantum dots (QDs), particles several nanometers in diameter, exhibit a range of inter...
We present a detailed study of the parameters which affect the geometrical perfection of nanopyramid...
This paper discusses the growth and the properties of semiconductor nanostructures based on self-ass...
emiconductor nanostructures such as quantum wells, quantum wires or quantum dots exhibit superior pr...
The fabrication of semiconductor structures with precisely controlled nanomeLer scale compositional ...
Breakthroughs in nanomaterials and nanoscience enable the development of novel photonic devices and ...
Practical strategies of utilizing typical semiconducting materials with size smaller than the excito...
Quantum dots (QDs) are nanoscale semiconductor crystals that possess special characteristics, and th...
We have developed a novel technology, called nanoparticle conversion, for producing compound semicon...
AbstractAn atomic-force microscope assisted technique is developed to control the position and size ...
Quantum dots are spherical nano-sized crystals. They can be made of nearly every semiconductor met-a...
Quantum dots (QDs) today belong to the central research objects of many scientific groups. The study...
The quantum dot (QD) is defined as an artificially structured system with the capacity to load elect...
Semiconductor nanocrystals are particles of nanometer size whose physico-chemical properties depend ...
Semiconductor nanocrystals known as quantum dots (QDs) are spherical particles comprising from some ...
Semiconductor quantum dots (QDs), particles several nanometers in diameter, exhibit a range of inter...
We present a detailed study of the parameters which affect the geometrical perfection of nanopyramid...
This paper discusses the growth and the properties of semiconductor nanostructures based on self-ass...
emiconductor nanostructures such as quantum wells, quantum wires or quantum dots exhibit superior pr...
The fabrication of semiconductor structures with precisely controlled nanomeLer scale compositional ...
Breakthroughs in nanomaterials and nanoscience enable the development of novel photonic devices and ...
Practical strategies of utilizing typical semiconducting materials with size smaller than the excito...
Quantum dots (QDs) are nanoscale semiconductor crystals that possess special characteristics, and th...