Background: Elongated nanostructures, such as nanowires, have attracted significant attention for application in silicon-based solar cells. The high aspect ratio and characteristic radial junction configuration can lead to higher device performance, by increasing light absorption and, at the same time, improving the collection efficiency of photo-generated charge carriers. This work investigates the performance of ultra-thin solar cells characterised by nanowire arrays on a crystalline silicon bulk. Results: Proof-of-concept devices on a p-type mono-crystalline silicon wafer were manufactured and compared to flat references, showing improved absorption of light, while the final 11.8% (best-device) efficiency was hindered by sub-optimal pass...
Silicon nanowires (SiNWs) are promising structures with excellent photovoltaic properties for low-co...
Solar cells have generated a lot of interest as a potential source of clean renewable energy for the...
Nanowire arrays exhibit efficient light coupling and strong light trapping, making them well suited ...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Development of highly efficient nanowire-based photovoltaic devices requires an accurate modeling of...
Reflection and transmission through a solar cell can be significantly reduced using light-trapping s...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
2013-12-01This thesis is about light-trapping in thin film silicon photovoltaic devices. Light-trapp...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Silicon nanowires (SiNWs) are a one-dimensional semiconductor, which shows promising applications in...
Silicon nanowires (SiNWs) are promising structures with excellent photovoltaic properties for low-co...
Solar cells have generated a lot of interest as a potential source of clean renewable energy for the...
Nanowire arrays exhibit efficient light coupling and strong light trapping, making them well suited ...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Development of highly efficient nanowire-based photovoltaic devices requires an accurate modeling of...
Reflection and transmission through a solar cell can be significantly reduced using light-trapping s...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
2013-12-01This thesis is about light-trapping in thin film silicon photovoltaic devices. Light-trapp...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Silicon nanowires (SiNWs) are a one-dimensional semiconductor, which shows promising applications in...
Silicon nanowires (SiNWs) are promising structures with excellent photovoltaic properties for low-co...
Solar cells have generated a lot of interest as a potential source of clean renewable energy for the...
Nanowire arrays exhibit efficient light coupling and strong light trapping, making them well suited ...