Thin-film solar cells with CuInxGa1−xSe2 (CIGS) absorber are still far below their efficiency limit, although lab cells reach already 19.9%. One important aspect is the homogeneity of the alloy. Large-scale simulations combining Monte Carlo and density functional calculations show that two phases coexist in thermal equilibrium below room temperature. Only at higher temperatures, CIGS becomes more and more a homogeneous alloy. A larger degree of inhomogeneity for Ga-rich CIGS persists over a wide temperature range, which may contribute to the low observed efficiency of Ga-rich CIGS solar cells.
@article{arxiv.1004.1080,
title = {Indium-Gallium Segregation in CuIn$_{x}$Ga$_{1-x}$Se$_2$: An ab initio based Monte Carlo Study},
author = {Christian D. R. Ludwig and Thomas Gruhn and Claudia Felser and Tanja Schilling and Johannes Windeln and Peter Kratzer},
journal= {arXiv preprint arXiv:1004.1080},
year = {2010}
}