Multijunction solar cells can be fabricated by bonding together component cells that are grown separately. Because the component cells are each grown lattice-matched to suitable substrates, this technique allows alloys of different lattice constants to be combined without the structural defects introduced when using metamorphic buffers. Here we present results on the fabrication and performance of four-junction mechanical stacks composed of GaInP/GaAs and GaInAsP/GaInAs tandems, grown on GaAs and InP substrates, respectively. The two tandems were bonded together with a lowindex, transparent epoxy that acts as an omni-directional reflector to the GaAs bandedge luminescence, while simultaneously transmitting nearly all of the sub-bandgap ligh...
Abstract — A novel approach has been developed to enable the creation of a fully lattice-matched tw...
Solar Energy is a clean and abundant energy source that can help reduce reliance on fossil fuels aro...
We present a new approach for ultra-high-performance tandem solar cells that involves inverted epita...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
Triple-junction solar cells from III–V compound semiconductors have thus far delivered the highest s...
An affinity for high performance solar cells in the space market, as well as the development of new ...
The highest solar cell conversion efficiencies are achieved with Four-junction devices under concent...
Multijunction solar cells with four junctions are expected to be the next-generation technology for ...
Progressing beyond 3-junction inverted-metamorphic multijunction solar cells grown on GaAs substrate...
The highest conversion efficiencies are reached by multi-junction III-V solar cells. Wafer-bonding o...
Progressing beyond 3-junction inverted-metamorphic multijunction solar cells grown on GaAs substrate...
Multi-junction solar cells based on III-V materials have achieved the highest efficiencies of any pr...
Direct bonded interconnect between subcells of a lattice-mismatched III-V compound multijunction cel...
Abstract — A novel approach has been developed to enable the creation of a fully lattice-matched tw...
Solar Energy is a clean and abundant energy source that can help reduce reliance on fossil fuels aro...
We present a new approach for ultra-high-performance tandem solar cells that involves inverted epita...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
Triple-junction solar cells from III–V compound semiconductors have thus far delivered the highest s...
An affinity for high performance solar cells in the space market, as well as the development of new ...
The highest solar cell conversion efficiencies are achieved with Four-junction devices under concent...
Multijunction solar cells with four junctions are expected to be the next-generation technology for ...
Progressing beyond 3-junction inverted-metamorphic multijunction solar cells grown on GaAs substrate...
The highest conversion efficiencies are reached by multi-junction III-V solar cells. Wafer-bonding o...
Progressing beyond 3-junction inverted-metamorphic multijunction solar cells grown on GaAs substrate...
Multi-junction solar cells based on III-V materials have achieved the highest efficiencies of any pr...
Direct bonded interconnect between subcells of a lattice-mismatched III-V compound multijunction cel...
Abstract — A novel approach has been developed to enable the creation of a fully lattice-matched tw...
Solar Energy is a clean and abundant energy source that can help reduce reliance on fossil fuels aro...
We present a new approach for ultra-high-performance tandem solar cells that involves inverted epita...