DocumentCode :
3447615
Title :
Optimization of electrical and optical properties in multilayer TCO thin film structures
Author :
George, Joseph ; Haley, Robert ; Pate, Brian ; Rozeveld, Steve ; Krafft, Mitchell ; Bernius, Mark T. ; Yeung, Simon
Author_Institution :
Dow Chem. Co., Midland, MI, USA
fYear :
2009
fDate :
7-12 June 2009
Abstract :
Multilayer oxide thin film stacks of aluminum doped zinc oxide (AZO) and tin doped indium oxide (ITO) have been sequentially deposited on soda lime glass substrates by RF sputtering of AZO and ITO ceramic targets at a substrate temperature of 150°C. The ratio of the AZO thickness to the ITO thickness is varied while keeping the total thickness of the stack constant. The electrical and optical properties of the multilayer stacks have been investigated as a function of this ratio and the number of interfaces. The experimental results are compared and their impact on device performance is demonstrated by simulations with validated AMPS-1D models. XRD and microscopy measurements have been carried out to understand the microstructure of the multilayer system and to establish its correlation with the opto- electric properties. The results have been evaluated for use of these multilayer TCO stacks as potential window layers for the photovoltaic solar cell applications.
Keywords :
Hall mobility; II-VI semiconductors; X-ray diffraction; aluminium; carrier density; electrical resistivity; indium compounds; infrared spectra; multilayers; optical microscopy; semiconductor growth; semiconductor thin films; sputter deposition; tin; ultraviolet spectra; visible spectra; zinc compounds; Hall mobility; RF sputtering; UV-VIS-NIR spectra; XRD; ZnO:Al-In2O3:Sn; carrier concentration; electrical properties; electrical resistivity; microscopy; microstructure; multilayer TCO stacks; multilayer oxide thin film stacks; multilayer thin film structures; optical properties; photovoltaic solar cell; soda lime glass substrates; temperature 150 degC; Aluminum; Ceramics; Glass; Indium tin oxide; Nonhomogeneous media; Optical films; Radio frequency; Sputtering; Substrates; Zinc oxide;
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.2009.5411646
Filename :
5411646
Link To Document :
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