DocumentCode
3446434
Title
Flexible CdTe solar cells with high photovoltaic conversion efficiency
Author
Perrenoud, J. ; Buecheler, S. ; Tiwari, A.N.
Author_Institution
Lab. for Thin Films & Photovoltaics, Empa - Swiss Fed. Labs. for Mater. Testing & Res., Dubendorf, Switzerland
fYear
2009
fDate
7-12 June 2009
Abstract
CdTe/CdS solar cells have been grown with a low temperature deposition process on flexible polyimide film and glass substrates in a superstrate configuration. Tin doped indium oxide (ITO) was used as transparent front electrical contact and a highly transparent and a resistive oxide layer was introduced between the ITO and CdS to enable the reduction of the CdS layer thickness resulting in increased current density, processing yield and reproducibility. The device structure consists of ITO, intrinsic ZnO, CdS, CdTe, Cu/Au back contact. The ITO and ZnO layers were deposited by rf sputtering while the other layers were grown by high vacuum thermal evaporation. During the whole process the substrate temperature did not exceed 420°C. The photovoltaic parameters of the flexible CdTe cells are comparable to CdTe/CdS cells on glass substrates except of a difference in the current density, which is due to the lower transmission of the polyimide substrate. Flexible CdTe/CdS cells on polyimide exceeding 10% efficiency were reproducibly produced. Nearly 9% efficiency was achieved with an in-line compatible pentacene gold electrical back contact without bromine methanol etching on glass substrate. No adhesion problem of the solar-cell structure on polyimide occurred even when rolled to small radius of curvatures. Simple processing and high performance of these high efficiency solar cells offer several advantages for manufacturing and applications.
Keywords
II-VI semiconductors; cadmium compounds; carbon; current density; electrical contacts; evaporation; glass; indium compounds; solar cells; sputter deposition; substrates; tin compounds; wide band gap semiconductors; CdTe-CdS; ITO; ZnO; current density; electrical back contact; electrical contact; flexible polyimide film; glass substrates; high photovoltaic conversion efficiency; high vacuum thermal evaporation; low temperature deposition; pentacene; polyimide substrate; rf sputter deposition; solar cells; tin doped indium oxide; Contacts; Current density; Glass; Indium tin oxide; Photovoltaic cells; Photovoltaic systems; Polyimides; Solar power generation; Substrates; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Photovoltaic Specialists Conference (PVSC), 2009 34th IEEE
Conference_Location
Philadelphia, PA
ISSN
0160-8371
Print_ISBN
978-1-4244-2949-3
Electronic_ISBN
0160-8371
Type
conf
DOI
10.1109/PVSC.2009.5411573
Filename
5411573
Link To Document