The inability of solar cell materials to convert all incident photon energy into electrical current, provides a fundamental limit to the solar cell efficiency; the so called Shockley–Queisser (SQ) limit. A process termed upconversion provides a pathway to convert otherwise unabsorbed low energy photons passing through the solar cell into higher energy photons, which subsequently can be redirected back to the solar cell. The combination of a semi-transparent InGaP solar cell with lanthanide upconverters, consisting of ytterbium and erbium ions doped in three different host materials (Gd2O2S, Y2O3 and NaYF4) is investigated. Using sub-band gap light of wavelength range 890 nm to 1045 nm with a total accumulated power density of 2.7 kW m-2, a ...
Within this thesis erbium-doped up-converters have been characterized and applied to silicon solar c...
The main losses in solar cells result from the incomplete utilization of the solar spectrum. Via the...
Upconversion of sub-band-gap photons is a promising approach to increase the efficiency of solar cel...
The inability of solar cell materials to convert all incident photon energy into electrical current,...
In this research one of the many possible methods to increase the efficiency of solar cells is descr...
Upconversion (UC) of subband-gap photons is a promising possibility to enhance solar cell efficiency...
Upconverter materials and upconverter solar devices were recently investigated with broad-band excit...
Upconversion denotes the process of absorption of two or more photons followed by the emission of on...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Upconverter materials and upconverter solar devices were recently investigated with broad-band excit...
Upconversion of sub-band-gap photons promises to increase solar cell efficiencies by making these ph...
Frequency upconversion of sub-bandgap photons is one approach to push the efficiency limit of solar ...
Upconversion (UC) of sub-band-gap photons is a promising approach to increase solar cell efficiencie...
Upconversion of low-energy photons into high-energy photons increases the efficiency of photovoltaic...
Within this thesis erbium-doped up-converters have been characterized and applied to silicon solar c...
The main losses in solar cells result from the incomplete utilization of the solar spectrum. Via the...
Upconversion of sub-band-gap photons is a promising approach to increase the efficiency of solar cel...
The inability of solar cell materials to convert all incident photon energy into electrical current,...
In this research one of the many possible methods to increase the efficiency of solar cells is descr...
Upconversion (UC) of subband-gap photons is a promising possibility to enhance solar cell efficiency...
Upconverter materials and upconverter solar devices were recently investigated with broad-band excit...
Upconversion denotes the process of absorption of two or more photons followed by the emission of on...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Upconverter materials and upconverter solar devices were recently investigated with broad-band excit...
Upconversion of sub-band-gap photons promises to increase solar cell efficiencies by making these ph...
Frequency upconversion of sub-bandgap photons is one approach to push the efficiency limit of solar ...
Upconversion (UC) of sub-band-gap photons is a promising approach to increase solar cell efficiencie...
Upconversion of low-energy photons into high-energy photons increases the efficiency of photovoltaic...
Within this thesis erbium-doped up-converters have been characterized and applied to silicon solar c...
The main losses in solar cells result from the incomplete utilization of the solar spectrum. Via the...
Upconversion of sub-band-gap photons is a promising approach to increase the efficiency of solar cel...