Title :
Influence of band gap profiling in front part of absorber on CIGS solar cell performance
Author :
Touafek, N. ; Mahamdi, R. ; Aida, M.S. ; Bouloufa, A.
Author_Institution :
Dept. of Electron., Univ. Constantine 1, Constantine, Algeria
Abstract :
The computer simulation tool Analysis of Microelectronic and Photonic Structures (AMPS-ID) was employed. This work investigates the effects of a band-gap grading profile close to the linear in the region close to the junction Copper-Indium-gallium-deselenide (CIGS) based solar cell performance for a constant values of front band-gap (Egfront) and d (width of the forward grading) equal to 1.28 eV and 0.25μm, respectively the sublinear profile presents the best performance where an increase of efficiency reaches (0.2%) is noted contrary to the supralinear profile which presents a decreasing of efficiency by about (0.8%) comparing to the linear profile value and this is due to the effects of traps varies with the band-gap. With varying d and Egfront the difference between linear and supralinear profiles increases more than that between linear and sublinear ones, but the Egfront is more decisive where we noted for a value equal 1.35 eV the drop of efficiency for supralinear profile reaches (2.2%) and an increases by (1.4%) for sublinear one. The width of the forward grading at the limit of the space charge region (SCR) yields a decrease by (0.8%) for supralinear profile and an increase by (0.7%) for sublinear one of the efficiency comparing to the linear profile value.
Keywords :
copper compounds; energy gap; gallium compounds; indium compounds; solar cells; space charge; AMPS-ID; Cu(InGa)Se2; SCR; band-gap grading profile; computer simulation tool analysis; electron volt energy 1.28 eV; forward grading; front band-gap; junction CIGS based solar cell performance; junction copper-indium-gallium-deselenide based solar cell; linear profile value; microelectronic and photonic structures; size 0.25 mum; space charge region; sublinear profile; supralinear profile; traps; Junctions; Numerical models; Performance evaluation; Photonic band gap; Photovoltaic cells; Photovoltaic systems; Thyristors; AMPS-ID; Cu (In, Ga)Se2; Solar cell; graded band-gap;
Conference_Titel :
Renewable Energy Congress (IREC), 2014 5th International
Conference_Location :
Hammamet
Print_ISBN :
978-1-4799-2196-6
DOI :
10.1109/IREC.2014.6826966