In this paper, we have developed a physics-based analytical model for the electrical characteristics of passivated silicon carrier-selective contact (CSC) solar cells and validated it with numerical simulations. The model comprises analytical solutions of: 1) the Poisson equation, accurately capturing the level of inversion and accumulation at the crystalline silicon (c-Si) layer interfaces, and 2) the recombination current capturing the various recombination mechanisms at work in the solar cell. The calculations establish that CSC solar cells have the potential to achieve an efficiency greater than 26% even when both c-Si interfaces have realistic SRV values of 100 cm/s. The model helps illustrate the physics underlying the performance of ...
This work presents a systematic analysis of the transport mechanism and surface passivation of tunne...
Passivating contacts are a promising technology to enhance silicon solar cells conversion efficiency...
The global photovoltaic (PV) market is dominated by crystalline silicon (c-Si) based technologies wi...
For optimum performance of solar cells featuring a locally contacted rear surface, the metallization...
In this thesis, contact resistivity for carrier-selective contacts (CSCs) is evaluated by using fini...
The main goal of a solar cell’s contact is to simultaneously minimize the contact resistivity ρcont ...
The main goal of a solar cell's contact is to simultaneously minimize the contact resistivity ρ cont...
Passivation, conductivity, and selectivity are often acknowledged as the three requirements for opti...
Controlling the concentration of charge carriers near the surface is essential for solar cells. It p...
Effective passivating and carrier-selective contacts are based on the deposition of thin-film system...
Passivating contacts are a promising technology to enhance silicon solar cells conversion efficiency...
\u3cp\u3eTo further increase the conversion efficiency of crystalline silicon solar cells it is vita...
\u3cp\u3eTo further increase the conversion efficiency of crystalline silicon (c-Si) solar cells, it...
This paper presents an analysis of physical mechanisms related to operation and optimization of int...
To further increase the conversion efficiency of crystalline silicon (c-Si) solar cells, it is vital...
This work presents a systematic analysis of the transport mechanism and surface passivation of tunne...
Passivating contacts are a promising technology to enhance silicon solar cells conversion efficiency...
The global photovoltaic (PV) market is dominated by crystalline silicon (c-Si) based technologies wi...
For optimum performance of solar cells featuring a locally contacted rear surface, the metallization...
In this thesis, contact resistivity for carrier-selective contacts (CSCs) is evaluated by using fini...
The main goal of a solar cell’s contact is to simultaneously minimize the contact resistivity ρcont ...
The main goal of a solar cell's contact is to simultaneously minimize the contact resistivity ρ cont...
Passivation, conductivity, and selectivity are often acknowledged as the three requirements for opti...
Controlling the concentration of charge carriers near the surface is essential for solar cells. It p...
Effective passivating and carrier-selective contacts are based on the deposition of thin-film system...
Passivating contacts are a promising technology to enhance silicon solar cells conversion efficiency...
\u3cp\u3eTo further increase the conversion efficiency of crystalline silicon solar cells it is vita...
\u3cp\u3eTo further increase the conversion efficiency of crystalline silicon (c-Si) solar cells, it...
This paper presents an analysis of physical mechanisms related to operation and optimization of int...
To further increase the conversion efficiency of crystalline silicon (c-Si) solar cells, it is vital...
This work presents a systematic analysis of the transport mechanism and surface passivation of tunne...
Passivating contacts are a promising technology to enhance silicon solar cells conversion efficiency...
The global photovoltaic (PV) market is dominated by crystalline silicon (c-Si) based technologies wi...