This project supports the Solar America Initiative by: (1) assistance to SAI Incubators (Primestar Solar, AvA Solar); (2) providing industry with baseline understanding of CdS/CdTe device formation and reliability--incorporation of low-cost, high quality TCOs, functionality and options for buffer layers, effect of various CdS options, effect of and importance CdSTe alloy formation, effect and options for CdCl{sub 2} treatment, effect and options for back contact, and effect of residual impurities during all stages of device formation; (3) understanding modes and mechanisms of cell-level stability; and (4) establishment of CdTe PDIL Tool for rapid material and process screening
This project, carried out at the Colorado School of Mines, addresses long-term research and developm...
The scientific literature concerning degradation and atomic diffusion in CdTe/CdS cells has been rev...
2017 Summer.Includes bibliographical references.Thin-film CdTe photovoltaics are quickly maturing in...
The potential of photovoltaics to become a major global business enterprise still lingers outside th...
The current state of CdTe/CdS solar cell development is reviewed with emphasis on the understanding ...
A systems-driven approach linking upstream solar cell device fabrication history with downstream per...
This project supports the Solar America Initiative by carrying out work on target topics identified ...
Through this Cooperative Research and Development Agreement, NREL and PrimeStar Solar will work toge...
The primary goal of this study was to ascertain the presence and types of mechanisms affecting CdS/C...
Recent developments in the following areas are briefly reviewed: a) the electrical structure of grai...
Multiple sustainable energy sources are of paramount importance in today's ever power hungry-world. ...
The main tasks of the cadmium telluride portion of this project include the development of simplifie...
Secondary-ion mass spectrometry analysis of the CdS/CdTe interface shows that S diffusion in CdTe in...
Cadmium telluride (CdTe) is a leading thin film photovoltaic (PV) material due to its near ideal ban...
The CdTe thin film solar cells have reached enough technological maturity to be one of the most succ...
This project, carried out at the Colorado School of Mines, addresses long-term research and developm...
The scientific literature concerning degradation and atomic diffusion in CdTe/CdS cells has been rev...
2017 Summer.Includes bibliographical references.Thin-film CdTe photovoltaics are quickly maturing in...
The potential of photovoltaics to become a major global business enterprise still lingers outside th...
The current state of CdTe/CdS solar cell development is reviewed with emphasis on the understanding ...
A systems-driven approach linking upstream solar cell device fabrication history with downstream per...
This project supports the Solar America Initiative by carrying out work on target topics identified ...
Through this Cooperative Research and Development Agreement, NREL and PrimeStar Solar will work toge...
The primary goal of this study was to ascertain the presence and types of mechanisms affecting CdS/C...
Recent developments in the following areas are briefly reviewed: a) the electrical structure of grai...
Multiple sustainable energy sources are of paramount importance in today's ever power hungry-world. ...
The main tasks of the cadmium telluride portion of this project include the development of simplifie...
Secondary-ion mass spectrometry analysis of the CdS/CdTe interface shows that S diffusion in CdTe in...
Cadmium telluride (CdTe) is a leading thin film photovoltaic (PV) material due to its near ideal ban...
The CdTe thin film solar cells have reached enough technological maturity to be one of the most succ...
This project, carried out at the Colorado School of Mines, addresses long-term research and developm...
The scientific literature concerning degradation and atomic diffusion in CdTe/CdS cells has been rev...
2017 Summer.Includes bibliographical references.Thin-film CdTe photovoltaics are quickly maturing in...