The work under the proposed CRADA will be a joint effort by BP Solar and NREL to develop new types of high performance inks for high quality contacts to silicon solar cells. NREL will develop inks that have electronic properties that will allow the formation of high quality ohmic contacts to n- and p-type crystalline silicon, and BP Solar will evaluate these contacts in test contact structures
The properties of fine-line printed contacts on silicon solar cells, in combination with light-induc...
Reported are the development and demonstration of a 17% efficient 25mm x 25mm crystalline Silicon so...
In this CRADA NREL will modify/develop metallization inks that are compatible with 1366 Technologies...
The purpose of this CRADA was to combine the strengths of NREL and Evergreen Solar in the area of in...
This document describes the statement of work for National Renewable Energy Laboratory (NREL) as a s...
The objective of this report is to develop inkjet printing (including tools, inks, and processing co...
We report on our project to develop inkjet printable contacts for solar cells. Ag, Cu, and Ni metall...
The contact formation on high efficiency solar cells using a high temperature process is the subject...
The contact formation on high efficiency solar cells using a high temperature process is the subject...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
With about 125,000 terawatts of solar power striking the earth at any given moment, solar energy may...
Pastes and inks to contact silicon solar cell emitters have been further developed since decades and...
The world's ever increasing demand for energy necessitates technologies that generate electricity fr...
Front side contacts on silicon solar cells were printed with a metal aerosol jet system using highly...
The properties of fine-line printed contacts on silicon solar cells, in combination with light-induc...
Reported are the development and demonstration of a 17% efficient 25mm x 25mm crystalline Silicon so...
In this CRADA NREL will modify/develop metallization inks that are compatible with 1366 Technologies...
The purpose of this CRADA was to combine the strengths of NREL and Evergreen Solar in the area of in...
This document describes the statement of work for National Renewable Energy Laboratory (NREL) as a s...
The objective of this report is to develop inkjet printing (including tools, inks, and processing co...
We report on our project to develop inkjet printable contacts for solar cells. Ag, Cu, and Ni metall...
The contact formation on high efficiency solar cells using a high temperature process is the subject...
The contact formation on high efficiency solar cells using a high temperature process is the subject...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
Ag, Cu, and Ni metallizations were inkjet printed with near vacuum deposition quality. The approach ...
With about 125,000 terawatts of solar power striking the earth at any given moment, solar energy may...
Pastes and inks to contact silicon solar cell emitters have been further developed since decades and...
The world's ever increasing demand for energy necessitates technologies that generate electricity fr...
Front side contacts on silicon solar cells were printed with a metal aerosol jet system using highly...
The properties of fine-line printed contacts on silicon solar cells, in combination with light-induc...
Reported are the development and demonstration of a 17% efficient 25mm x 25mm crystalline Silicon so...
In this CRADA NREL will modify/develop metallization inks that are compatible with 1366 Technologies...