We present an optical design study on a nanowire heterojunction bipolar transistor solar cell. The simple structure of this novel architecture of double-junction solar cell, allows for independent power extraction from the two junctions and makes the nanowire growth easier than in current-matched double-junction solar cells as there is no need for tunnel junctions and only three main semiconductor regions must be grown. We show that the nanowire heterojunction bipolar transistor solar cell design results in an optical performance similar to comparable planar devices, with the nanowires only covering 1/3 of the substrate area. Furthermore, it allows for the growth of lattice-mismatched semiconductor combinations, which increases the detailed...
III-V semiconductor-based planar multi-junction solar cells synthesized to match the solar spectrum,...
Bottom-up fabricated single-junction III–V nanowire array solar cells have shown efficiency up to 15...
The efficiency of substrate-removed GaAs nanowire solar cells can be increased to over 32% by borrow...
Conventional solar cells, including multijunction solar cells, are based on pn junctions as building...
Practical device architectures are proposed here for the implementation of three-terminal heterojunc...
Here we propose, for the first time, a solar cell characterized by a semiconductor transistor struct...
Three-terminal solar cells exploiting the heterojunction bipolar transistor structure combine the ad...
Multijunction solar cells provide us a viable approach to achieve efficiencies higher than the Shock...
The solar power received by Earth far exceeds global power demands. Despite this, infrastructure sho...
Solar energy harvesting for electricity production is regarded as a fully credible future energy sou...
In this paper we quantify the constraints and opportunities for radial junction nanowire solar cells...
The three-terminal heterojunction bipolar transistor solar cell (HBTSC) concept enables the realizat...
Both axial and radial junction nanowire solar cells have their own challenges and advantages. Howeve...
Nanowire-based solar cells opened a new avenue for increasing conversion efficiency and rationalizin...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...
III-V semiconductor-based planar multi-junction solar cells synthesized to match the solar spectrum,...
Bottom-up fabricated single-junction III–V nanowire array solar cells have shown efficiency up to 15...
The efficiency of substrate-removed GaAs nanowire solar cells can be increased to over 32% by borrow...
Conventional solar cells, including multijunction solar cells, are based on pn junctions as building...
Practical device architectures are proposed here for the implementation of three-terminal heterojunc...
Here we propose, for the first time, a solar cell characterized by a semiconductor transistor struct...
Three-terminal solar cells exploiting the heterojunction bipolar transistor structure combine the ad...
Multijunction solar cells provide us a viable approach to achieve efficiencies higher than the Shock...
The solar power received by Earth far exceeds global power demands. Despite this, infrastructure sho...
Solar energy harvesting for electricity production is regarded as a fully credible future energy sou...
In this paper we quantify the constraints and opportunities for radial junction nanowire solar cells...
The three-terminal heterojunction bipolar transistor solar cell (HBTSC) concept enables the realizat...
Both axial and radial junction nanowire solar cells have their own challenges and advantages. Howeve...
Nanowire-based solar cells opened a new avenue for increasing conversion efficiency and rationalizin...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...
III-V semiconductor-based planar multi-junction solar cells synthesized to match the solar spectrum,...
Bottom-up fabricated single-junction III–V nanowire array solar cells have shown efficiency up to 15...
The efficiency of substrate-removed GaAs nanowire solar cells can be increased to over 32% by borrow...