AbstractThe parameter J0, commonly used in solar cell modelling, has a deep physical meaning, which this paper intends to clarify. Upon examination, J0 can be identified as the recombination current density in thermal equilibrium. In many cases the same equilibrium parameter J0 can be used to describe carrier recombination under external illumination. Nevertheless, when carriers flow from the point where they are generated towards a high recombination site the value of J0 that matters to solar cell operation differs from that in equilibrium. In addition, J0 may in certain cases be dependent on the excess carrier concentration. We conclude by recommending that J0 be referred to as a recombination parameter
The competition between charge extraction and nongeminate recombination critically determines the cu...
Recombination mechanisms in solar cells are frequently assessed through the determination of idealit...
We present a new experimental technique that affords direct quantification of the fraction of charge...
The parameter J0, commonly used in solar cell modelling, has a deep physical meaning, which this pap...
AbstractThe parameter J0, commonly used in solar cell modelling, has a deep physical meaning, which ...
Solar cells are a competitive alternative to nonrenewable energy sources such as fossil fuels. Howev...
An elementary model for the analysis of a photovoltaic solar cell is proposed. This analysis is root...
AbstractExtraction of recombination properties like the recombination pre-factor J0 and the Shockley...
AbstractIn this paper we briefly survey processes enhanced by high carrier densities and cases relev...
Carrier recombination is a central process in bulk heterojunction organic solar cells. Based on the ...
At the end of the solar cell manufacturing process the current-density vs. voltage curves (J(U) curv...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
Among the parameters that characterize a solar cell and define its power-conversion efficiency, the ...
The dominant recombination phenomena which limit the highest efficiency attainable in silicon solar ...
The diffusion–recombination model is a key tool in understanding the photovoltaic operation of solar...
The competition between charge extraction and nongeminate recombination critically determines the cu...
Recombination mechanisms in solar cells are frequently assessed through the determination of idealit...
We present a new experimental technique that affords direct quantification of the fraction of charge...
The parameter J0, commonly used in solar cell modelling, has a deep physical meaning, which this pap...
AbstractThe parameter J0, commonly used in solar cell modelling, has a deep physical meaning, which ...
Solar cells are a competitive alternative to nonrenewable energy sources such as fossil fuels. Howev...
An elementary model for the analysis of a photovoltaic solar cell is proposed. This analysis is root...
AbstractExtraction of recombination properties like the recombination pre-factor J0 and the Shockley...
AbstractIn this paper we briefly survey processes enhanced by high carrier densities and cases relev...
Carrier recombination is a central process in bulk heterojunction organic solar cells. Based on the ...
At the end of the solar cell manufacturing process the current-density vs. voltage curves (J(U) curv...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
Among the parameters that characterize a solar cell and define its power-conversion efficiency, the ...
The dominant recombination phenomena which limit the highest efficiency attainable in silicon solar ...
The diffusion–recombination model is a key tool in understanding the photovoltaic operation of solar...
The competition between charge extraction and nongeminate recombination critically determines the cu...
Recombination mechanisms in solar cells are frequently assessed through the determination of idealit...
We present a new experimental technique that affords direct quantification of the fraction of charge...