First-principles study on electronic and structural properties of Cu(In/Ga)Se alloys for solar cells


Autoria(s): Kim, Iurii
Data(s)

08/06/2015

08/06/2015

2015

Resumo

Thin-film photovoltaic solar cells based on the Cu(In1−xGax)Se2 (CIGS) alloys have attracted more and more attention due to their large optical absorption coefficient, long term stability, low cost, and high efficiency. Modern theoretical studies of this material with first-principles calculations can provide accurate description of the electronic structure and yield results in close agreement with experimental values, but takes a large amount of calculation time. In this work, we use first-principles calculations based on the computationally affordable meta- generalized gradient approximation of the density-functional theory to investigate electronic and structural properties of the CIGS alloys. We report on the simulation of the lattice parameters and band gaps, as a function of chemical composition. The obtained results were found to be in a good agreement with the available experimental data.

Identificador

http://www.doria.fi/handle/10024/109222

URN:NBN:fi-fe2015060810059

Idioma(s)

en

Palavras-Chave #first-principles #density-functional theory #CuInSe2 alloys #point defects #GGA
Tipo

Master's thesis

Diplomityö