III-V multi-junction solar cells are promising devices for photovoltaic applications under very high concentration levels of sunlight. Shadowing losses of the front side metallization and ohmic resistance losses in the metal grid limit the practical cell size typically to around 1 cm2 at 800 suns. The use of a full back-contact architecture, similar to the Metal Wrap-Trough (MWT) technology known in silicon photovoltaics, can help to overcome this limitation. Furthermore, positioning both the positive and negative contact pads on the rear side of concentrator solar cells opens the possibility for efficient packaging solutions and the realization of dense array receivers with low metal shadowing. The MWT technology addresses conventional con...
The development of cost-effective and highly efficient solar cells is a primary goal of current rese...
III-V multi-junction solar cells have become standard in space and in terrestrial concentrator syste...
This report describes research to develop the technology needed to demonstrate a monolithic, multiju...
III–V multi-junction solar cells are promising devices for photovoltaic applications under very high...
The authors combine a silicon-based metal-wrap-through architecture with a unit cell designed for th...
On the way to higher efficiencies, back contact solar cells seem to be a promising alternative to co...
On the way to higher efficiencies, back contact solar cells seem to be a promising alternative to co...
Starting from the conventional silicon solar cell that features a single diffused shallow emitter an...
One of the main barriers on the way to mass production of concentrator silicon solar cells is the la...
This work presents recent progress in research on multicrystalline silicon solar cells based on the ...
The objective of this thesis was the development of a crystalline silicon back contact solar cell, w...
We present metal wrap through (MWT) silicon solar cells with passivated surfaces based on a simplifi...
This work presents recent progress in research on multicrystalline silicon solar cells based on the ...
International audienceLattice matched III-V/Ge solar cells are mainstream for Concentrator PhotoVolt...
none5siMetal Wrap Through (MWT) solar cell represents a type of back-contact solution which allows t...
The development of cost-effective and highly efficient solar cells is a primary goal of current rese...
III-V multi-junction solar cells have become standard in space and in terrestrial concentrator syste...
This report describes research to develop the technology needed to demonstrate a monolithic, multiju...
III–V multi-junction solar cells are promising devices for photovoltaic applications under very high...
The authors combine a silicon-based metal-wrap-through architecture with a unit cell designed for th...
On the way to higher efficiencies, back contact solar cells seem to be a promising alternative to co...
On the way to higher efficiencies, back contact solar cells seem to be a promising alternative to co...
Starting from the conventional silicon solar cell that features a single diffused shallow emitter an...
One of the main barriers on the way to mass production of concentrator silicon solar cells is the la...
This work presents recent progress in research on multicrystalline silicon solar cells based on the ...
The objective of this thesis was the development of a crystalline silicon back contact solar cell, w...
We present metal wrap through (MWT) silicon solar cells with passivated surfaces based on a simplifi...
This work presents recent progress in research on multicrystalline silicon solar cells based on the ...
International audienceLattice matched III-V/Ge solar cells are mainstream for Concentrator PhotoVolt...
none5siMetal Wrap Through (MWT) solar cell represents a type of back-contact solution which allows t...
The development of cost-effective and highly efficient solar cells is a primary goal of current rese...
III-V multi-junction solar cells have become standard in space and in terrestrial concentrator syste...
This report describes research to develop the technology needed to demonstrate a monolithic, multiju...