In this article, a theoretical approach for interface recombination in a solar cell with a heterostructure that includes a buffer layer is developed. The focus of the analysis is on the diode quality factor and the activation energy of the saturation current that characterize the diode current. The influence of the buffer layer thickness, recombination velocity, and negative band offsets at two interfaces absorber buffer and buffer window on these two recombination parameters is studied. The diode quality factor and the activation energy show a dependence on the buffer layer thickness. The activation energy is reduced for negative conduction band offsets on both interfaces
The effect of various window layers for InP solar cells are studied. Window materials that have type...
We present an experimental approach to extract the dark saturation current density j0e-met at the em...
The authors have studied efficient p-on-n homo- (InGaAsSb/GaSb) and heterojunction (InGaAsSb/AlGaAsS...
This paper treats heterojunction solar cells where the energy conversion efficiency is limited by in...
ion an recombination at states on the device interfaces governs the cell dynamic response. Recombina...
In case of thin-film solar cells, it is often rather difficult to determine what the dominant recomb...
Impedance spectroscopy (at forward bias and under illumination) of solar cells comprised thin hydrog...
Impedance spectroscopy (at forward bias and under illumination) of solar cells comprised thin hydrog...
AbstractThis paper indicated a theoretical model for describing the effects of the interface recombi...
ABSTRACT Metastable defects can decisively influence the diode factor and thus the efficiency of a ...
Solar energy is a viable clean form of renewable energy which can be utilized by converting light en...
By combining information on solar cell layer structure and electrical response analyzed by impedance...
The large diffusion lengths recurrently measured in perovskite single crystals and films signal smal...
Indoor applications of high-efficiency silicon solar cells implicate illumination densities that are...
Many solar cell structures contain regions where the emitter pn junction borders on the surface. If ...
The effect of various window layers for InP solar cells are studied. Window materials that have type...
We present an experimental approach to extract the dark saturation current density j0e-met at the em...
The authors have studied efficient p-on-n homo- (InGaAsSb/GaSb) and heterojunction (InGaAsSb/AlGaAsS...
This paper treats heterojunction solar cells where the energy conversion efficiency is limited by in...
ion an recombination at states on the device interfaces governs the cell dynamic response. Recombina...
In case of thin-film solar cells, it is often rather difficult to determine what the dominant recomb...
Impedance spectroscopy (at forward bias and under illumination) of solar cells comprised thin hydrog...
Impedance spectroscopy (at forward bias and under illumination) of solar cells comprised thin hydrog...
AbstractThis paper indicated a theoretical model for describing the effects of the interface recombi...
ABSTRACT Metastable defects can decisively influence the diode factor and thus the efficiency of a ...
Solar energy is a viable clean form of renewable energy which can be utilized by converting light en...
By combining information on solar cell layer structure and electrical response analyzed by impedance...
The large diffusion lengths recurrently measured in perovskite single crystals and films signal smal...
Indoor applications of high-efficiency silicon solar cells implicate illumination densities that are...
Many solar cell structures contain regions where the emitter pn junction borders on the surface. If ...
The effect of various window layers for InP solar cells are studied. Window materials that have type...
We present an experimental approach to extract the dark saturation current density j0e-met at the em...
The authors have studied efficient p-on-n homo- (InGaAsSb/GaSb) and heterojunction (InGaAsSb/AlGaAsS...