Etude des cellules solaires minces et ultraminces
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Bibliothéque Centrale-Universite Laghouat
Abstract
In this work, we have numerically studied two thin solar cells (even ultrathin) based on
ZnO:Al/i-ZnO/ZnMgO/CZTS. We particularly focused on replacing the classic buffer layer at
the CdS with the non-toxic and abundant ZnMgO material, in view of getting better
performance.
The influence of thickness, doping concentration and defect density of different layers of the
two solar cells ZnO:Al/i-ZnO/ZnMgO/CZTS and ZnO:Al/i-ZnO/CdS/CZTS, as well as the
interface defects density of ZnMgO/CZTS and CdS/CZTS, on the photovoltaic parameters of
the cells studied was examined. Maintaining the optimal values of the different physical and
geometrical parameters leading to the best efficiency, then we studied the influence of the gap
energy Eg of the CZTS absorber layer and the RS and RSH resistances on the different
photovoltaic parameters. The optimal efficiency corresponding to Eg 1.4 eV is 22.08 %, for
the ZnMgO/CZTS cell and 23.64 % for the CdS/CZTS cell.
Finally, a comparative study between our two cells was realized. The results have shown a
large similarity of J-V characteristic and QE quantum efficiency. However, we note, the better
performance of the ZnMgO/CZTS cell in the long wavelength region, the important region of
the solar cell. Thus, it can be affirmed that ZnMgO would be a very good candidate to replace
CdS considered until now as the most suitable material.
