Effect of [Ga]/[In+Ga] Atomic Ratio on Electric Parameters of Cu(In,Ga)Se2 Thin Film Solar Cells
Journal: International Journal of Scientific Engineering and Technology (IJSET) (Vol.5, No. 5)Publication Date: 2016-05-01
Authors : Ousmane Diagne; Alain Kassine Ehemba; Demba Diallo; Ibrahima Wade; Mouhamadou Mamour Soce; Moustapha Dieng;
Page : 252-255
Keywords : CIGS solar cells; [Ga]/[In+Ga]; electric parameters; external quantum efficiency; SCAPS-1D.;
Abstract
In this paper we study the influence of [Ga]/[In + Ga] atomic ratio on electric parameters of the CIGS solar cell. We conduct the simulation of a solar cell constituted of window layer (ZnO)/ buffer layer (CdS)/ absorber Cu(In,Ga)Se? using the SCAPS-1D program. We vary the [Ga]/[In + Ga] atomic ratio according to the values 0.3; 0.5 and 0.7. This variation intended to study the behavior of macroscopic electrical parameters (Voc, Jsc, FF, η), characteristic J/V, conductance G/V, capacitance C/V and external quantum efficiency EQE of the cell. The results obtained show that the performance of CIGS solar cells decrease with increasing in [Ga]/[In+Ga] ratio. A conversion efficiency of about 21.54% is obtained with the cell having a ratio of 0.3. This makes it the most promising approach of our cells studied.
Other Latest Articles
- The Influence of Temperature on the Electric Parameters of a Solar Cell Based on Cu(In,Ga)Se2
- An Algorithm for Quality Analysis of Contact Lens in Opthalmology (QACLO) Using Fuzzy Expert System
- The First Experience of Kidney Transplant?tion in the Clinical Hospital of Almaty
- Review on Effects of Input Parameters and Design of Experiments on Surface Grinding Process in EN31 material
- Assured Sensitive Data Sharing on a Big Data Platform using Proxy Re-Encryption (PRE) Algorithm
Last modified: 2016-06-06 01:21:52