Significant improvements in the efficiency of solar cells by combination with luminescent up- or down-converters have recently been predicted theoretically. Here, we extend the theoretical analysis of the limiting efficiency of the up-conversion (UC)-system to realistic Airmass spectra and analyse the spectral robustness of the UC-system. We also present initial experimental results from prototypes involving bifacial silicon solar cells with UC-phosphors attached to the rear surface, and discuss the possibility of realizing efficient UC with low-band-gap solar cells in combination with a light emitting diode
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
AbstractUp-conversion (UC) is a promising approach to utilize sub-band-gap photons for solar cells (...
In this paper we present an advanced upeonverter system concept to reduce the sub-bandgap losses of ...
Up-conversion (UC) is the generation of one higher energy visible/near infrared (NIR) photon for two...
Upconversion (UC) of sub-band-gap photons is a promising approach to increase solar cell efficiencie...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
To date, a number of photon up-conversion (UC) systems with high quantum efficiencies have been demo...
The limiting efficiency of a solar cell enhanced by both up- and downconversion is calculated to be ...
Upconversion of sub-band-gap photons promises to increase solar cell efficiencies by making these ph...
Upconversion of sub-band-gap photons is a promising approach to increase the efficiency of solar cel...
We consider a scheme to increase the conversion efficiency of a single bandgap solar cell by applyin...
Upconversion of sub-band-gap photons has the potential to increase the efficiency of solar cells sig...
Frequency upconversion of sub-bandgap photons is one approach to push the efficiency limit of solar ...
Up-conversion photovoltaic (UC-PV) devices have been proposed as a simple approach to overcoming the...
Up-conversion (UC) is a promising approach to utilize sub-band-gap photons for solar cells (SCs). Du...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
AbstractUp-conversion (UC) is a promising approach to utilize sub-band-gap photons for solar cells (...
In this paper we present an advanced upeonverter system concept to reduce the sub-bandgap losses of ...
Up-conversion (UC) is the generation of one higher energy visible/near infrared (NIR) photon for two...
Upconversion (UC) of sub-band-gap photons is a promising approach to increase solar cell efficiencie...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
To date, a number of photon up-conversion (UC) systems with high quantum efficiencies have been demo...
The limiting efficiency of a solar cell enhanced by both up- and downconversion is calculated to be ...
Upconversion of sub-band-gap photons promises to increase solar cell efficiencies by making these ph...
Upconversion of sub-band-gap photons is a promising approach to increase the efficiency of solar cel...
We consider a scheme to increase the conversion efficiency of a single bandgap solar cell by applyin...
Upconversion of sub-band-gap photons has the potential to increase the efficiency of solar cells sig...
Frequency upconversion of sub-bandgap photons is one approach to push the efficiency limit of solar ...
Up-conversion photovoltaic (UC-PV) devices have been proposed as a simple approach to overcoming the...
Up-conversion (UC) is a promising approach to utilize sub-band-gap photons for solar cells (SCs). Du...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
AbstractUp-conversion (UC) is a promising approach to utilize sub-band-gap photons for solar cells (...
In this paper we present an advanced upeonverter system concept to reduce the sub-bandgap losses of ...