Semiconductor nanowires (NWs) are filamentary crystals with the diameter ranging from few tens up to few hundreds of nanometers. In the last 15 years, they have been intensively studied for the prospectives that their unique quasi-one dimensional shape offers to both fundamental and applied physics. More recently particular attention has been dedicated to the advantages that their geometry exhibits in the separation and extraction of photo-generated carriers with respect to standard thin film or bulk technologies. The aim of this thesis is the realization and characterization of single GaAs NW photovoltaic and optoelectronic devices. The work starts with the synthesis of radial NWp-n junctions. The core growth has been realized using the Va...
Semiconductor nanowires (NWs) offer versatile possibilities among future electronic and photonic dev...
Gallium arsenide p-i-n radial junctions were fabricated by molecular beam epitaxy. The current-volta...
Nanowires have the ability to absorb light much more efficient than conventional thin film layers. T...
In this project MBE growth and microfabrication processes are employed to study the growth and chara...
In this project MBE growth and microfabrication processes are employed to study the growth and chara...
Gallium arsenide p-i-n radial junctions were fabricated by molecular beam epitaxy. The current-volta...
Photovoltaics (PVs) based on nanostructured III/V semiconductors can potentially reduce the material...
Photovoltaics (PVs) based on nanostructured III/V semiconductors can potentially reduce the material...
Semiconductor nanowires are promising candidates for the emerging nano-scale optoelectronics. They p...
Semiconductor nanowires have proven to be promising building blocks for next-generation optoelectron...
Nanowires (NWs) with radial p-i-n junction have advantages, such as large junction area and small in...
We report on the self-assembly by Au-catalyzed metalorganic vapor phase epitaxy (MOVPE) of GaAs-base...
In this paper the fundamental properties of heterostructures based on semiconductor nanowires synthe...
This thesis deals with the growth of GaAs nanowires (NWs) by molecular beam epitaxy (MBE) using vapo...
This thesis deals with the growth of GaAs nanowires (NWs) by molecular beam epitaxy (MBE) using vapo...
Semiconductor nanowires (NWs) offer versatile possibilities among future electronic and photonic dev...
Gallium arsenide p-i-n radial junctions were fabricated by molecular beam epitaxy. The current-volta...
Nanowires have the ability to absorb light much more efficient than conventional thin film layers. T...
In this project MBE growth and microfabrication processes are employed to study the growth and chara...
In this project MBE growth and microfabrication processes are employed to study the growth and chara...
Gallium arsenide p-i-n radial junctions were fabricated by molecular beam epitaxy. The current-volta...
Photovoltaics (PVs) based on nanostructured III/V semiconductors can potentially reduce the material...
Photovoltaics (PVs) based on nanostructured III/V semiconductors can potentially reduce the material...
Semiconductor nanowires are promising candidates for the emerging nano-scale optoelectronics. They p...
Semiconductor nanowires have proven to be promising building blocks for next-generation optoelectron...
Nanowires (NWs) with radial p-i-n junction have advantages, such as large junction area and small in...
We report on the self-assembly by Au-catalyzed metalorganic vapor phase epitaxy (MOVPE) of GaAs-base...
In this paper the fundamental properties of heterostructures based on semiconductor nanowires synthe...
This thesis deals with the growth of GaAs nanowires (NWs) by molecular beam epitaxy (MBE) using vapo...
This thesis deals with the growth of GaAs nanowires (NWs) by molecular beam epitaxy (MBE) using vapo...
Semiconductor nanowires (NWs) offer versatile possibilities among future electronic and photonic dev...
Gallium arsenide p-i-n radial junctions were fabricated by molecular beam epitaxy. The current-volta...
Nanowires have the ability to absorb light much more efficient than conventional thin film layers. T...