The goals of this project are study Cu free back contact alternatives for CdS/CdTe thin film solar cells, and to research dry etching for CdTe surface preparation before contact application. In addition, an attempt has been made to evaluate the stability of some of the contacts researched. The contacts studied in this work include ZnTe/Cu2Te, Sb2Te3, and Ni-P alloys. The ZnTe/Cu2Te contact system is studied as basically an extension of the earlier work done on Cu2Te at USF. RF sputtering from a compound target of ZnTe and Cu2Te respectively deposits these layers on etched CdTe surface. The effect of Cu2Te thickness and deposition temperature on contact and cell performance will be studied with the ZnTe depositions conditions kept constant. ...
We study the performance of CdS/CdTe thin film PV devices processed with a ZnTe:Cu/Ti contact to inv...
Conventional back contacts on CdTe/CdS solar cells are commonly made with Cu/Au or Cu/graphite. Ofte...
CdTe is the leading commercial thin film photovoltaic technology with current record laboratory effi...
The goals of this project are study Cu free back contact alternatives for CdS/CdTe thin film solar c...
The goals of this project are study Cu free back contact alternatives for CdS/CdTe thin film solar c...
This program has explored a number of novel materials for contacts to CdTe solar cells in order to r...
This program has explored a number of novel materials for contacts to CdTe solar cells in order to r...
One of the key issues in manufacturing of CdTe solar cells is the formation of a stable and low-barr...
One of the key issues in manufacturing of CdTe solar cells is the formation of a stable and low-barr...
2021 Fall.Includes bibliographical references.With an increasing reliance on photovoltaic energy com...
Cadmium telluride (CdTe) is high-efficiency commercialised thin film photovoltaic technology. Howeve...
CdTe is one of the most promising absorbers for use in inexpensive semiconductor solar cells having ...
Cu from the back contact of a polycrystalline CdS/CdTe solar cell does more than assist in forming a...
Solar cells based on CdTe absorbers are attractive due to the optimal direct band gap energy and lar...
Solar cells based on CdTe absorbers are attractive due to the optimal direct band gap energy and lar...
We study the performance of CdS/CdTe thin film PV devices processed with a ZnTe:Cu/Ti contact to inv...
Conventional back contacts on CdTe/CdS solar cells are commonly made with Cu/Au or Cu/graphite. Ofte...
CdTe is the leading commercial thin film photovoltaic technology with current record laboratory effi...
The goals of this project are study Cu free back contact alternatives for CdS/CdTe thin film solar c...
The goals of this project are study Cu free back contact alternatives for CdS/CdTe thin film solar c...
This program has explored a number of novel materials for contacts to CdTe solar cells in order to r...
This program has explored a number of novel materials for contacts to CdTe solar cells in order to r...
One of the key issues in manufacturing of CdTe solar cells is the formation of a stable and low-barr...
One of the key issues in manufacturing of CdTe solar cells is the formation of a stable and low-barr...
2021 Fall.Includes bibliographical references.With an increasing reliance on photovoltaic energy com...
Cadmium telluride (CdTe) is high-efficiency commercialised thin film photovoltaic technology. Howeve...
CdTe is one of the most promising absorbers for use in inexpensive semiconductor solar cells having ...
Cu from the back contact of a polycrystalline CdS/CdTe solar cell does more than assist in forming a...
Solar cells based on CdTe absorbers are attractive due to the optimal direct band gap energy and lar...
Solar cells based on CdTe absorbers are attractive due to the optimal direct band gap energy and lar...
We study the performance of CdS/CdTe thin film PV devices processed with a ZnTe:Cu/Ti contact to inv...
Conventional back contacts on CdTe/CdS solar cells are commonly made with Cu/Au or Cu/graphite. Ofte...
CdTe is the leading commercial thin film photovoltaic technology with current record laboratory effi...