AbstractThe density of defects at the interface between the amorphous and crystalline silicon layers limits the photovoltaic device performance of amorphous silicon / crystalline silicon heterojunction solar cells. We investigate the electroluminescence properties of these devices for a variation of interface defect densities. Electroluminescence efficiency, dark saturation current density and open-circuit voltage are related via Planck’s generalized law and the current-voltage relations. These analytical relations are reproduced by the full numerical simulation of the solar cell behavior, especially the exponential dependence of the electroluminescence efficiency on the open-circuit voltage. Experimentally we show that a planar silicon het...
Efficient passivation of interface defects is crucial in the development of efficient amorphous sili...
We present computer modeling for effects of the p/i interface upon the open-circuit voltage VOC in a...
AbstractCurrent industrial monocrystalline silicon wafer solar cells based on screen-printing techno...
AbstractThe density of defects at the interface between the amorphous and crystalline silicon layers...
We report on the influence of the interface quality on the output characteristics of amorphous cryst...
We have studied the influence of defects on silicon heterojunction solar cell efficiency by a method...
Heterojunction solar cells with thin emitter layers of a Si H n on monocrystalline p type silicon ...
International audienceWe present here a study of the recombination at the hetero-interface of solar ...
International audienceWe present here a study of the recombination at the hetero-interface of solar ...
AbstractWe analyze the microscopic mechanisms limiting the open-circuit voltage Voc of high efficien...
The current losses due to parasitic absorption in the indium tin oxide (ITO) and amorphous silicon (...
High efficiency Si heterojunction (HJ) solar cells must exhibit low interface recombination, as it l...
Silicon heterojunction solar cells consist of thin amorphous silicon layers deposited on crystalline...
We present two-dimensional device physics simulations of amorphous silicon / crystalline silicon het...
AbstractOne of the limitations of current amorphous silicon/crystalline silicon heterojunction solar...
Efficient passivation of interface defects is crucial in the development of efficient amorphous sili...
We present computer modeling for effects of the p/i interface upon the open-circuit voltage VOC in a...
AbstractCurrent industrial monocrystalline silicon wafer solar cells based on screen-printing techno...
AbstractThe density of defects at the interface between the amorphous and crystalline silicon layers...
We report on the influence of the interface quality on the output characteristics of amorphous cryst...
We have studied the influence of defects on silicon heterojunction solar cell efficiency by a method...
Heterojunction solar cells with thin emitter layers of a Si H n on monocrystalline p type silicon ...
International audienceWe present here a study of the recombination at the hetero-interface of solar ...
International audienceWe present here a study of the recombination at the hetero-interface of solar ...
AbstractWe analyze the microscopic mechanisms limiting the open-circuit voltage Voc of high efficien...
The current losses due to parasitic absorption in the indium tin oxide (ITO) and amorphous silicon (...
High efficiency Si heterojunction (HJ) solar cells must exhibit low interface recombination, as it l...
Silicon heterojunction solar cells consist of thin amorphous silicon layers deposited on crystalline...
We present two-dimensional device physics simulations of amorphous silicon / crystalline silicon het...
AbstractOne of the limitations of current amorphous silicon/crystalline silicon heterojunction solar...
Efficient passivation of interface defects is crucial in the development of efficient amorphous sili...
We present computer modeling for effects of the p/i interface upon the open-circuit voltage VOC in a...
AbstractCurrent industrial monocrystalline silicon wafer solar cells based on screen-printing techno...