AbstractWe synthesize and investigate a lead- and particle-free metal-organic ink based on silver salts and various glass components to be used for the front side metallization of crystalline silicon solar cells. This novel metallization ink can be considered as a low-temperature sintering ink, as the silver salt reduces and builds a seed-layer layer at 450-480oC. It can locally open the silicon nitride layer as well as form contact to the phosphorous-doped emitter at the surface. Due to the absence of particles in the ink, aerosol or ink jet printing are the ideal deposition technologies, as clogging of the printer nozzles is avoided. Additionally, as another advantage of particle-free inks, no aggregation occurs, allowing long-term stabil...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
AbstractPastes and inks to contact silicon solar cell emitters have been further developed since dec...
AbstractThis paper presents the development of a fine line seed layer screen printing paste with low...
AbstractWe synthesize and investigate a lead- and particle-free metal-organic ink based on silver sa...
In this paper lead-free silver ink for the front side metallization of silicon solar cells is invest...
Ink jet printable water based inks are prepared by a new silver nanoparticle synthesis and the addit...
ABSTRACT With about 125,000 terawatts of solar power striking the earth at any given moment, solar e...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
AbstractIn this paper we study the potential of seed and plate front side metallization using inkjet...
A new technique for the front side metallization of silicon solar cells is presented, based on the i...
Using direct-write approaches in photovoltaics for metallization and contact formation can significa...
An alternative for an industrial front side metallization process for silicon solar cells is present...
This document describes the statement of work for National Renewable Energy Laboratory (NREL) as a s...
Front side contacts on silicon solar cells were printed with a metal aerosol jet system using highly...
Inkjet printing offers an attractive method for the deposition of metal interconnects in electronic ...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
AbstractPastes and inks to contact silicon solar cell emitters have been further developed since dec...
AbstractThis paper presents the development of a fine line seed layer screen printing paste with low...
AbstractWe synthesize and investigate a lead- and particle-free metal-organic ink based on silver sa...
In this paper lead-free silver ink for the front side metallization of silicon solar cells is invest...
Ink jet printable water based inks are prepared by a new silver nanoparticle synthesis and the addit...
ABSTRACT With about 125,000 terawatts of solar power striking the earth at any given moment, solar e...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
AbstractIn this paper we study the potential of seed and plate front side metallization using inkjet...
A new technique for the front side metallization of silicon solar cells is presented, based on the i...
Using direct-write approaches in photovoltaics for metallization and contact formation can significa...
An alternative for an industrial front side metallization process for silicon solar cells is present...
This document describes the statement of work for National Renewable Energy Laboratory (NREL) as a s...
Front side contacts on silicon solar cells were printed with a metal aerosol jet system using highly...
Inkjet printing offers an attractive method for the deposition of metal interconnects in electronic ...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
AbstractPastes and inks to contact silicon solar cell emitters have been further developed since dec...
AbstractThis paper presents the development of a fine line seed layer screen printing paste with low...