DocumentCode :
3557563
Title :
Introduction of Cu in CdS and its effect on CdTe solar cells
Author :
Barri, K. ; Jayabal, A. ; Zhao, H. ; Morel, D.L. ; Asher, S. ; Pankow, J.W. ; Young, M.R. ; Ferekides, C.S.
Author_Institution :
Clean Energy Res. Center, Univ. of South Florida, Tampa, FL, USA
fYear :
2005
fDate :
3-7 Jan. 2005
Firstpage :
287
Lastpage :
290
Abstract :
The use of copper during the fabrication of CdTe solar cells is a common feature for nearly all processing schemes developed for these devices. Copper is typically introduced in CdTe during the application of the back electrode, to enhance device performance by facilitating the formation of an ohmic back contact. However, Cu has also been associated with observed instability in CdTe. For this work, although Cu was utilized during the cell fabrication process, it was eliminated from the back contact formation step, and instead introduced in the CdS film prior to the deposition of the CdTe. The only fabrication step, where Cu was intentionally introduced, was subsequent to the CdS deposition. Both plain graphite and Sb2Te3/Mo were used as back contacts. Solar cell results suggested that ohmic contacts to CdTe can be attained with undoped graphite as the back electrode. For devices contacted with plain graphite VOC´s and FF´s in the range of 800-830 mV and 63-67% have been obtained. For Sb2Te3-contacted cells, the incorporation of Cu in CdS has lead to a significant increase in performance even though a back barrier was present in these cells.
Keywords :
II-VI semiconductors; cadmium compounds; copper; electrodes; graphite; ohmic contacts; semiconductor doping; semiconductor thin films; solar cells; wide band gap semiconductors; 800 to 830 mV; C-CdTe-CdS:Cu; CdS film; CdTe deposition; CdTe instability; CdTe solar cells; Cu incorporation; Sb2Te3-Mo-CdTe-CdS:Cu; back barrier; back contact formation step; back electrode; cell fabrication process; device performance; ohmic back contact formation; plain graphite; processing schemes; Copper; Electrodes; Fabrication; Laboratories; Ohmic contacts; Photovoltaic cells; Renewable energy resources; Stability; Substrates; Temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference, 2005. Conference Record of the Thirty-first IEEE
ISSN :
0160-8371
Print_ISBN :
0-7803-8707-4
Type :
conf
DOI :
10.1109/PVSC.2005.1488125
Filename :
1488125
Link To Document :
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