Title of article :
Development of Cu(InGa)Se2-based thin-film PV modules
with a Zn(O,S,OH)x buffer layer
Author/Authors :
Katsumi Kushiya *، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2004
Abstract :
The CBD-Zn(O,S,OH)x buffer process is reviewed. Applying this buffer,our highest efficiencies are achieved,such as
a circuit (or submodule) efficiency of 14.2% at an aperture area of 864cm2 on a 30cm · 30cm-sized substrate and module
efficiencies of 13.4% at an aperture area of 3459cm2 on a mosaic module in which four 30cm · 30cm-sized circuits
are connected in parallel and 12.8% at an aperture area of 3456cm2 on a 30cm · 120cm-sized substrate. Our module
structure is a cover glass/EVA/MOCVD-BZO window/CBD-Zn(O,S,OH)x buffer/CIGSS surface layer/CIGS absorber/
Mo base electrode/soda-lime glass. Development of both the hardware (i.e. CBD apparatus) applicable to the mass production
and the suitable control parameters is necessary to establish the robust baseline process for the CBD-Zn(O,
S,OH)x buffer. Finding of %T monitoring and post-deposition light soaking in this buffer process contributes not only
to improve the reproducibility,but also to enhance the electrical yield and the I–V performance.
2004 Elsevier Ltd. All rights reserved
Keywords :
Cd-free buffer , OH)x buffer , solar cell , Eco-friendlydevice structure , S , Cu(InGa)Se2 (CIGS)-based thin-film module , PV module , Zn(O
Journal title :
Solar Energy
Journal title :
Solar Energy