AbstractPlated Ni/Cu/Ag contacts are an industrially feasible metallization approach for high efficiency c-Si solar cells with low surface doping concentrations (1018 cm-3 < ND < 1020 cm-3). The 2d-simulations of this work define the minimum requirements on the contact resistivity of metal contacts in a high efficiency solar cell design. The following experimental study of the contact resistivity of plated Ni/Cu/Ag contacts on lowly doped phosphorus emitter demonstrates low contact resistivities in the mΩcm2 regime, which enable solar cells with high fill factors. Furthermore, the paper analyzes the influence of the thermal silicidation process on pseudo-fill factor losses and on the mechanical contact adhesion. The contact adhesion is also...
AbstractThis work focuses on using copper (Cu) as the main conductor as an alternative to standard s...
The results of the second phase of the program of developing low cost contacts to silicon solar cell...
Copper (Cu) plating can reduce the consumption of silver for silicon (Si) photovoltaic manufacturing...
AbstractPlated Ni/Cu/Ag contacts are an industrially feasible metallization approach for high effici...
Solar power generation is largely dominated by photovoltaic (PV) systems which directly convert the ...
AbstractThis work focuses on using copper (Cu) as the main conductor as an alternative to standard s...
International audienceTo meet future energy demand and limit global warming, researchers and industr...
International audienceTo meet future energy demand and limit global warming, researchers and industr...
One of the key topics for industrial implementation of fully plated NiCu contacts on Si solar cells ...
abstract: As global population and demand for electrical power increase, humanity is faced with the ...
Investigating modifications of the silicon/metal interface during the manufacturing process and the ...
AbstractThe high price of silver has motivated the search for new paths in regard to the front metal...
Plating of a Ni-Cu stack on laser-structured passivation layer openings is a low-cost metallization ...
AbstractThis study focuses on the electrochemical Ni/Cu metallization of multi-crystalline silicon (...
In this study, NiSi has been formed as the contact for copper front metallization on laboratory sili...
AbstractThis work focuses on using copper (Cu) as the main conductor as an alternative to standard s...
The results of the second phase of the program of developing low cost contacts to silicon solar cell...
Copper (Cu) plating can reduce the consumption of silver for silicon (Si) photovoltaic manufacturing...
AbstractPlated Ni/Cu/Ag contacts are an industrially feasible metallization approach for high effici...
Solar power generation is largely dominated by photovoltaic (PV) systems which directly convert the ...
AbstractThis work focuses on using copper (Cu) as the main conductor as an alternative to standard s...
International audienceTo meet future energy demand and limit global warming, researchers and industr...
International audienceTo meet future energy demand and limit global warming, researchers and industr...
One of the key topics for industrial implementation of fully plated NiCu contacts on Si solar cells ...
abstract: As global population and demand for electrical power increase, humanity is faced with the ...
Investigating modifications of the silicon/metal interface during the manufacturing process and the ...
AbstractThe high price of silver has motivated the search for new paths in regard to the front metal...
Plating of a Ni-Cu stack on laser-structured passivation layer openings is a low-cost metallization ...
AbstractThis study focuses on the electrochemical Ni/Cu metallization of multi-crystalline silicon (...
In this study, NiSi has been formed as the contact for copper front metallization on laboratory sili...
AbstractThis work focuses on using copper (Cu) as the main conductor as an alternative to standard s...
The results of the second phase of the program of developing low cost contacts to silicon solar cell...
Copper (Cu) plating can reduce the consumption of silver for silicon (Si) photovoltaic manufacturing...