Semiconductor nanowires are key building blocks for the next generation of light-emitting diodes, solar cells and batteries. To fabricate functional nanowire-based devices on an industrial scale requires an efficient methodology that enables the mass production of nanowires with perfect crystallinity, reproducible and controlled dimensions and material composition, and low cost. So far there have been no reports of reliable methods that can satisfy all of these requirements. Here we show how aerotaxy, an aerosol-based growth method, can be used to grow nanowires continuously with controlled nanoscale dimensions, a high degree of crystallinity and at a remarkable growth rate. In our aerotaxy approach, catalytic size-selected Au aerosol parti...
Crystalline III-V semiconductor nanowires have great potential in fabrication of nanodevices for app...
Controlled doping in semiconductor nanowires modifies their electrical and optical properties, which...
Nanowires were grown by means of a novel aerosol-based method called Aerotaxy. Here an aerosol of Au...
Aerotaxy is an aerosol-based growth method for semiconductors and we present in detail how aerotaxy ...
Cost- and resource-efficient growth is necessary for many applications of semiconductor nanowires. W...
In this thesis an efficient nanowire fabrication technique, called Aerotaxy, is investigated. Tradit...
Cost- and resource-efficient growth is necessary for many applications of semiconductor nanowires. W...
III-V semiconductor nanowires are high aspect ratio nanostructures with superior properties that can...
III-V semiconductor nanowires are high aspect ratio nanostructures with superior properties that can...
We have grown GaAsP nanowires with high optical and structural quality by Aerotaxy, a new continuous...
Nanowires have the ability to absorb light much more efficient than conventional thin film layers. T...
Semiconductor nanowires could significantly boost the functionality and performance of future electr...
Au-catalyzed self-assembly of GaAs nanowires on (1¯1¯1¯)B GaAs by metalorganic vapor phase epitaxy i...
Crystalline III-V semiconductor nanowires have great potential in fabrication of nanodevices for app...
Semiconductor nanowires have properties that make them potentially useful for applications in future...
Crystalline III-V semiconductor nanowires have great potential in fabrication of nanodevices for app...
Controlled doping in semiconductor nanowires modifies their electrical and optical properties, which...
Nanowires were grown by means of a novel aerosol-based method called Aerotaxy. Here an aerosol of Au...
Aerotaxy is an aerosol-based growth method for semiconductors and we present in detail how aerotaxy ...
Cost- and resource-efficient growth is necessary for many applications of semiconductor nanowires. W...
In this thesis an efficient nanowire fabrication technique, called Aerotaxy, is investigated. Tradit...
Cost- and resource-efficient growth is necessary for many applications of semiconductor nanowires. W...
III-V semiconductor nanowires are high aspect ratio nanostructures with superior properties that can...
III-V semiconductor nanowires are high aspect ratio nanostructures with superior properties that can...
We have grown GaAsP nanowires with high optical and structural quality by Aerotaxy, a new continuous...
Nanowires have the ability to absorb light much more efficient than conventional thin film layers. T...
Semiconductor nanowires could significantly boost the functionality and performance of future electr...
Au-catalyzed self-assembly of GaAs nanowires on (1¯1¯1¯)B GaAs by metalorganic vapor phase epitaxy i...
Crystalline III-V semiconductor nanowires have great potential in fabrication of nanodevices for app...
Semiconductor nanowires have properties that make them potentially useful for applications in future...
Crystalline III-V semiconductor nanowires have great potential in fabrication of nanodevices for app...
Controlled doping in semiconductor nanowires modifies their electrical and optical properties, which...
Nanowires were grown by means of a novel aerosol-based method called Aerotaxy. Here an aerosol of Au...