4.7 Article

The impact of atmospheric species on the degradation of CIGS solar cells

Journal

SOLAR ENERGY MATERIALS AND SOLAR CELLS
Volume 141, Issue -, Pages 49-56

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.solmat.2015.05.019

Keywords

CIGS solar cells; CO2; Degradation; Diffusion; Water; ZnO:Al

Funding

  1. Research Program of the Materials innovation institute M2i [M71.9.10401]

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CIGS solar cells were exposed to liquid water purged with the atmospheric gases carbon dioxide (CO2), oxygen (O-2), nitrogen (N-2) and air in order to investigate their chemical degradation behavior. The samples were analyzed by electrical, compositional and optical measurements before, during and after exposure in order to follow the degradation behavior of these solar cells in time. The solar cells showed a rapid decrease in conversion efficiency when exposed to water purged with a combination of CO2 and N-2 as well as to water purged with air, while their efficiency was slowly reduced in unpurged water and water purged with N-2 or O-2. Cross-section SEM showed that the exposure of samples to H2O with large concentrations of CO2 led to the dissolution of the ZnO:Al layer, likely starting from the grain boundaries. This resulted in an increased series resistance, which is likely related to an increase in resistivity of the ZnO:Al layer. It also led to a very rapid decrease of the short-circuit current of these samples. Therefore, the conversion efficiency was rapidly lost. (C) 2015 Elsevier B.V. All rights reserved.

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