Nanowire-based solar cells opened a new avenue for increasing conversion efficiency and rationalizing material use by growing different III–V materials on silicon substrates. Here, we propose a multiterminal nanowire solar cell design with a theoretical conversion efficiency of 48.3% utilizing an efficient lateral spectrum splitting between three different III–V material nanowire arrays grown on a flat silicon substrate. This allows choosing an ideal material combination to achieve the proper spectrum splitting as well as fabrication feasibility. The high efficiency is possible due to an enhanced absorption cross-section of standing nanowires and optimization of the geometric parameters. Furthermore, we propose a multiterminal contacting sc...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
This thesis describes optical and electrical modelling of vertically oriented III-V semiconductor na...
Solar cell designs based on disordered nanostructures tend to have higher efficiencies than structur...
Nanowire-based solar cells opened a new avenue for increasing conversion efficiency and rationalizin...
Solar energy harvesting for electricity production is regarded as a fully credible future energy sou...
The solar power received by Earth far exceeds global power demands. Despite this, infrastructure sho...
Semiconductor nanowires are a class of materials recently gaining increasing interest for solar cell...
III–V semiconductor nanowires have gained intensive attention for solar cell applications due to the...
ABSTRACT: Nanomaterials such as semiconductor nanowires have unique features that could enable novel...
The use of nanowires is intriguing because of the possibilities to improve photovoltaic performances...
Solar cells based on arrays of CVD-grown Si nano- or micro-wires are being considered as a potential...
III-V semiconductor-based planar multi-junction solar cells synthesized to match the solar spectrum,...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Silicon nanowires (SiNWs) are a one-dimensional semiconductor, which shows promising applications in...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
This thesis describes optical and electrical modelling of vertically oriented III-V semiconductor na...
Solar cell designs based on disordered nanostructures tend to have higher efficiencies than structur...
Nanowire-based solar cells opened a new avenue for increasing conversion efficiency and rationalizin...
Solar energy harvesting for electricity production is regarded as a fully credible future energy sou...
The solar power received by Earth far exceeds global power demands. Despite this, infrastructure sho...
Semiconductor nanowires are a class of materials recently gaining increasing interest for solar cell...
III–V semiconductor nanowires have gained intensive attention for solar cell applications due to the...
ABSTRACT: Nanomaterials such as semiconductor nanowires have unique features that could enable novel...
The use of nanowires is intriguing because of the possibilities to improve photovoltaic performances...
Solar cells based on arrays of CVD-grown Si nano- or micro-wires are being considered as a potential...
III-V semiconductor-based planar multi-junction solar cells synthesized to match the solar spectrum,...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
Silicon nanowires (SiNWs) are a one-dimensional semiconductor, which shows promising applications in...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...
Background: Elongated nanostructures, such as nanowires, have attracted significant attention for ap...
This thesis describes optical and electrical modelling of vertically oriented III-V semiconductor na...
Solar cell designs based on disordered nanostructures tend to have higher efficiencies than structur...