In this project MBE growth and microfabrication processes are employed to study the growth and characterisation of nanowires for photovoltaic applications, and to fabricate the nanowire solar cell. III-V semiconductor nanowires are one promising candidate for third generation solar cells. The key advantage of such nanostructure is low cost due to less material used for fabrication. One interesting feature of III-V nanowire is lattice mismatched materials can be integrated in the form of nanowires. The nanowire solar cell can be realized by growing pn junction in two configurations – axial and radial structures. In this project one branch is being studied which is radial nanostructures grown on GaAs(111)B substrates. GaAs ...
Semiconductor nanowires (NWs) are filamentary crystals with the diameter ranging from few tens up to...
We investigate the growth of III-V nanowires by MOCVD and the structural and optical properties of t...
International audienceOne obstacle for the development of nanowire (NW) solar cells is the challenge...
In this project MBE growth and microfabrication processes are employed to study the growth and chara...
2014-11-05This dissertation covers the growth, characterization of GaAs nanowires and application in...
Gallium arsenide p-i-n radial junctions were fabricated by molecular beam epitaxy. The current-volta...
Semiconductor nanowires have different physical properties than their bulk counterparts due to their...
Semiconductor nanowires have different physical properties than their bulk counterparts due to their...
Nanowires have the ability to absorb light much more efficient than conventional thin film layers. T...
Semiconductor nanowires are promising candidates for the emerging nano-scale optoelectronics. They p...
This thesis concerns a theoretical and experimental investigation of two applications of semiconduc...
Photovoltaics (PVs) based on nanostructured III/V semiconductors can potentially reduce the material...
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...
In this paper the fundamental properties of heterostructures based on semiconductor nanowires synthe...
Semiconductor nanowires (NWs) are filamentary crystals with the diameter ranging from few tens up to...
We investigate the growth of III-V nanowires by MOCVD and the structural and optical properties of t...
International audienceOne obstacle for the development of nanowire (NW) solar cells is the challenge...
In this project MBE growth and microfabrication processes are employed to study the growth and chara...
2014-11-05This dissertation covers the growth, characterization of GaAs nanowires and application in...
Gallium arsenide p-i-n radial junctions were fabricated by molecular beam epitaxy. The current-volta...
Semiconductor nanowires have different physical properties than their bulk counterparts due to their...
Semiconductor nanowires have different physical properties than their bulk counterparts due to their...
Nanowires have the ability to absorb light much more efficient than conventional thin film layers. T...
Semiconductor nanowires are promising candidates for the emerging nano-scale optoelectronics. They p...
This thesis concerns a theoretical and experimental investigation of two applications of semiconduc...
Photovoltaics (PVs) based on nanostructured III/V semiconductors can potentially reduce the material...
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...
In this paper the fundamental properties of heterostructures based on semiconductor nanowires synthe...
Semiconductor nanowires (NWs) are filamentary crystals with the diameter ranging from few tens up to...
We investigate the growth of III-V nanowires by MOCVD and the structural and optical properties of t...
International audienceOne obstacle for the development of nanowire (NW) solar cells is the challenge...