DocumentCode :
121417
Title :
Nd:YAG laser annealing investigation of screen-printed CIGS layer on PET: Layer annealing method for photovoltaic cell fabrication process
Author :
AlSaggaf, Ahmed ; Alarousu, Erkki ; Boulfrad, Samir ; Rothenberger, Alexander
Author_Institution :
Solar & Photovoltaic Eng. Res. Center, King Abdullah Univ. of Sci. & Technol., Thuwal, Saudi Arabia
fYear :
2014
fDate :
8-13 June 2014
Abstract :
Cu(In,Ga)Se2 (CIGS) ink was formulated from CIGS powder, polyvinyl butyral PVB, terpineol and polyester/polyamine co-polymeric dispersant KD-1. Thin films with different thicknesses were deposited on PET substrate using screen-printing followed by heat treatment using a Nd:YAG laser. The structure and morphology of the heated thin films were studied. The characterization of the CIGS powder, ink, and film was done using TGA, SEM, FIB, EDS, and XRD. TGA analysis shows that the CIGS ink is drying at 200 °C, which is well below the decomposition temperature of the PET substrate. It was observed by SEM that 20 pulses of 532nm and 60 mJ/cm2 Nd:YAG laser annealing causes atomic diffusion on the near surface area. Furthermore, FIB cross section images were utilized to monitor the effect of laser annealing in the depth of the layer. Laser annealing effects were compared to as deposited layer using XRD in reference to CIGS powder. The measurement shows that crystallinity of deposited CIGS is retained while EDS quantification and atomic ratio result in gradual loss of selenium as laser energy increases. The laser parameters were tuned in an effort to utilize laser annealing of screen-printed CIGS layer as a layer annealing method for solar cell fabrication process.
Keywords :
X-ray chemical analysis; X-ray diffraction; copper compounds; focused ion beam technology; gallium compounds; indium compounds; ink jet printing; laser beam annealing; polymerisation; polymers; scanning electron microscopy; semiconductor thin films; solar cells; solid lasers; thermal analysis; CIGS ink; CIGS powder; Cu(InGa)Se2; EDS; EDS quantification; FIB cross section images; Nd:YAG laser annealing; PET substrate; SEM; TGA; TGA analysis; XRD; atomic diffusion; atomic ratio; decomposition temperature; deposited CIGS crystallinity; heat treatment; heated thin films; layer annealing method; photovoltaic cell fabrication process; polyester-polyamine co-polymeric dispersant KD-1; polyvinyl butyral PVB; screen-printed CIGS layer; solar cell fabrication process; temperature 200 degC; terpineol; wavelength 532 nm; Annealing; Ink; Photovoltaic cells; Powders; Pulsed laser deposition; Substrates; Surface treatment; CIGS films; PET; laser annealing; photovoltaic cell fabrication; screen-printing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialist Conference (PVSC), 2014 IEEE 40th
Conference_Location :
Denver, CO
Type :
conf
DOI :
10.1109/PVSC.2014.6924918
Filename :
6924918
Link To Document :
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