AbstractThis work describes the development of the Laser Chemical Metal Deposition (LCMD) process for silicon solar cell metallisation. The LCMD process can be considered as an advanced and promising method for solar cell metallisation. With LCMD a metal seed layer is created on the surface of a silicon wafer. Subsequently, the seed layer is thickened by a plating process. It is a low temperature metallisation scheme that does not need any additional masking processes. In this work different nickel solutions and laser configurations were analyzed. Variations of laser power, repetition number and scan speed were performed and the resulting contacts were characterized. With the optimized parameters, silicon solar cells with efficiencies up to...
In this thesis work, Ni/Cu electrochemical deposition (“plating”) is studied as an alternative to th...
In this thesis work, Ni/Cu electrochemical deposition (“plating”) is studied as an alternative to th...
The vast majority of today's solar modules are produced using screen printing of silver pastes, whic...
AbstractThis work describes the development of the Laser Chemical Metal Deposition (LCMD) process fo...
This work describes the development of the Laser Chemical Metal Deposition (LCMD) process for silico...
AbstractThe high price of silver has motivated the search for new paths in regard to the front metal...
AbstractThe high price of silver has motivated the search for new paths in regard to the front metal...
The high price of silver has motivated the search for new paths in regard to the front metallization...
AbstractThis study focuses on the electrochemical Ni/Cu metallization of multi-crystalline silicon (...
This work proposes a laser-assisted metallization process out of a nickel electrolyte. A nickel seed...
AbstractLaser transferred contacts (LTC) feature low temperature contact formation, in addition to f...
Laser-assisted processing techniques utilized to produce the fine line, thin metal grid structures t...
International audienceThis study focuses on the electrochemical Ni/Cu metallization of multi-crystal...
AbstractThis study focuses on the electrochemical Ni/Cu metallization of multi-crystalline silicon (...
In this thesis work, Ni/Cu electrochemical deposition (“plating”) is studied as an alternative to th...
In this thesis work, Ni/Cu electrochemical deposition (“plating”) is studied as an alternative to th...
In this thesis work, Ni/Cu electrochemical deposition (“plating”) is studied as an alternative to th...
The vast majority of today's solar modules are produced using screen printing of silver pastes, whic...
AbstractThis work describes the development of the Laser Chemical Metal Deposition (LCMD) process fo...
This work describes the development of the Laser Chemical Metal Deposition (LCMD) process for silico...
AbstractThe high price of silver has motivated the search for new paths in regard to the front metal...
AbstractThe high price of silver has motivated the search for new paths in regard to the front metal...
The high price of silver has motivated the search for new paths in regard to the front metallization...
AbstractThis study focuses on the electrochemical Ni/Cu metallization of multi-crystalline silicon (...
This work proposes a laser-assisted metallization process out of a nickel electrolyte. A nickel seed...
AbstractLaser transferred contacts (LTC) feature low temperature contact formation, in addition to f...
Laser-assisted processing techniques utilized to produce the fine line, thin metal grid structures t...
International audienceThis study focuses on the electrochemical Ni/Cu metallization of multi-crystal...
AbstractThis study focuses on the electrochemical Ni/Cu metallization of multi-crystalline silicon (...
In this thesis work, Ni/Cu electrochemical deposition (“plating”) is studied as an alternative to th...
In this thesis work, Ni/Cu electrochemical deposition (“plating”) is studied as an alternative to th...
In this thesis work, Ni/Cu electrochemical deposition (“plating”) is studied as an alternative to th...
The vast majority of today's solar modules are produced using screen printing of silver pastes, whic...