This paper summarizes the state-of-the-art of the lattice matched GaInP/Ga(In)As/Ge triple-junction solar cell developed at the Solar Energy Institute of UPM (IES-UPM). Different research topics tackled over the last years about this structure are described. As result of this work, an efficiency of ∼ 40% at ∼ 415 × is presented
This research is focused on a new type of three junction high efficiency solar cell incorporating th...
The photovoltaic energy is one of the most popular topics of research in the field of clean energy s...
We develop lattice-mismatched GaInAsP as an alternative alloy to pure As-based alloys currently used...
This paper summarizes the state-of-the-art of the lattice matched GaInP/Ga(In)As/Ge triple-junction ...
This paper summarizes the state-of-the-art of the lattice matched GaInP/Ga(In)As/Ge triple-junction ...
The use of lattice-mismatched materials offers an additional degree of freedom to the design of an o...
We explore the potential for high efficiency multijunction solar cells that are not lattice matched ...
We explore the potential for high efficiency multijunction solar cells that are not lattice matched ...
Triple-junction solar cells from III–V compound semiconductors have thus far delivered the highest s...
The highest solar cell conversion efficiencies are achieved with Four-junction devices under concent...
This paper discusses semiconductor device research paths under investigation with the aim of reachin...
It is well-known, that the efficiency of Ga_0_._5_1In_0_._4_9P/GaAs monolithic tandem solar cells ca...
Spectrolab has demonstrated the first lattice matched InAlAs/InGaAsP/InGaAs triple junction solar ce...
Spectrolab has demonstrated the first lattice matched InAlAs/InGaAsP/InGaAs triple junction solar ce...
III–V compound semiconductors consist of elements out of the main groups III and V of the periodic t...
This research is focused on a new type of three junction high efficiency solar cell incorporating th...
The photovoltaic energy is one of the most popular topics of research in the field of clean energy s...
We develop lattice-mismatched GaInAsP as an alternative alloy to pure As-based alloys currently used...
This paper summarizes the state-of-the-art of the lattice matched GaInP/Ga(In)As/Ge triple-junction ...
This paper summarizes the state-of-the-art of the lattice matched GaInP/Ga(In)As/Ge triple-junction ...
The use of lattice-mismatched materials offers an additional degree of freedom to the design of an o...
We explore the potential for high efficiency multijunction solar cells that are not lattice matched ...
We explore the potential for high efficiency multijunction solar cells that are not lattice matched ...
Triple-junction solar cells from III–V compound semiconductors have thus far delivered the highest s...
The highest solar cell conversion efficiencies are achieved with Four-junction devices under concent...
This paper discusses semiconductor device research paths under investigation with the aim of reachin...
It is well-known, that the efficiency of Ga_0_._5_1In_0_._4_9P/GaAs monolithic tandem solar cells ca...
Spectrolab has demonstrated the first lattice matched InAlAs/InGaAsP/InGaAs triple junction solar ce...
Spectrolab has demonstrated the first lattice matched InAlAs/InGaAsP/InGaAs triple junction solar ce...
III–V compound semiconductors consist of elements out of the main groups III and V of the periodic t...
This research is focused on a new type of three junction high efficiency solar cell incorporating th...
The photovoltaic energy is one of the most popular topics of research in the field of clean energy s...
We develop lattice-mismatched GaInAsP as an alternative alloy to pure As-based alloys currently used...