We report on the progress made in the development of lattice-matched multijunction solar cells employing dilute nitride sub-cells. In particular, we report on upright four-junction architecture with bandgaps of 0.9 eV, 1.2 eV, 1.4 eV and 1.9 eV The four-junction solar cell includes two dilute nitride sub-junctions. This structure exhibited an efficiency of 29% at 1-sun AM1.5D illumination, which is the highest level reported for such architecture so far. In addition, we report on the progress in developing lattice-matched solar cell materials with a bandgap down to 0.7 eV, which enable the fabrication of highly efficient five- or six-junction solar cells on GaAs. We estimate that under 1000 suns illumination these five- or six-junction cell...
Recent advances on the development of a 4J latticematched dilute nitride solar cell for terrestrial ...
Multijunction solar cells consisting of three, series-connected, p-n junctions represent the state-o...
Low-bandgap GaInNAsSb single junction solar cells incorporating a planar Au back surface reflector f...
Monolithic four‐junction solar cells incorporating two dilute nitride (GaInNAsSb) bottom junctions a...
We report on the progress in developing lattice-matched GaAs-based solar cells with focus on develop...
We report on the progress in developing lattice-matched GaAs-based solar cells with focus on develop...
Narrow bandgap p-i-n dilute nitride GaInNAsSb junctions, for use as bottom cell in 6-junction solar ...
Dilute nitride arsenide antimonide compounds offer widely tailorable band-gaps, ranging from 0.8 eV ...
We demonstrate single junction GaInNAsSb solar cells with high nitrogen content, i.e. in the range o...
Dilute nitride arsenide antimonide compounds offer widely tailorable band-gaps, ranging from 0.8 eV ...
Dilute nitride arsenide antimonide compounds offer widely tailorable band-gaps, ranging from 0.8 eV ...
This paper discusses semiconductor device research paths under investigation with the aim of reachin...
Solar cells generate green energy directly from sunlight. The energy conversion efficiency of solar ...
Three- and four-junction III-V devices are proposed for ultrahigh-efficiency solar cells using a new...
We report a detailed performance assessment of triple junction dilute nitride solar cells fabricated...
Recent advances on the development of a 4J latticematched dilute nitride solar cell for terrestrial ...
Multijunction solar cells consisting of three, series-connected, p-n junctions represent the state-o...
Low-bandgap GaInNAsSb single junction solar cells incorporating a planar Au back surface reflector f...
Monolithic four‐junction solar cells incorporating two dilute nitride (GaInNAsSb) bottom junctions a...
We report on the progress in developing lattice-matched GaAs-based solar cells with focus on develop...
We report on the progress in developing lattice-matched GaAs-based solar cells with focus on develop...
Narrow bandgap p-i-n dilute nitride GaInNAsSb junctions, for use as bottom cell in 6-junction solar ...
Dilute nitride arsenide antimonide compounds offer widely tailorable band-gaps, ranging from 0.8 eV ...
We demonstrate single junction GaInNAsSb solar cells with high nitrogen content, i.e. in the range o...
Dilute nitride arsenide antimonide compounds offer widely tailorable band-gaps, ranging from 0.8 eV ...
Dilute nitride arsenide antimonide compounds offer widely tailorable band-gaps, ranging from 0.8 eV ...
This paper discusses semiconductor device research paths under investigation with the aim of reachin...
Solar cells generate green energy directly from sunlight. The energy conversion efficiency of solar ...
Three- and four-junction III-V devices are proposed for ultrahigh-efficiency solar cells using a new...
We report a detailed performance assessment of triple junction dilute nitride solar cells fabricated...
Recent advances on the development of a 4J latticematched dilute nitride solar cell for terrestrial ...
Multijunction solar cells consisting of three, series-connected, p-n junctions represent the state-o...
Low-bandgap GaInNAsSb single junction solar cells incorporating a planar Au back surface reflector f...