The conversion efficiency of as-deposited, CdTe solar cells is poor and typically less than 5%. A CdCl2 activation treatment increases this to up to 22%. Studies have shown that stacking faults (SFs) are removed and the grain boundaries (GBs) are decorated with chlorine. Thus, SF removal and device efficiency are strongly correlated but whether this is direct or indirect has not been established. Here we explain the passivation responsible for the increase in efficiency but also crucially elucidate the associated SF removal mechanism. The effect of chlorine on a model system containing a SF and two GBs is investigated using density functional theory. The proposed SF removal mechanisms are feasible at the 400 ∘C treatment temperature. It is concluded that the efficiency increase is due to electronic effects in the GBs while SF removal is a by-product of the saturation of the GB with chlorine but is a key signal that sufficient chlorine is present for passivation to occur.
Funding
EPSRC Studentship 1801035
Proposal for a Tier 2 Centre - HPC Midlands Plus
Engineering and Physical Sciences Research Council
This is an Open Access Article. It is published by Springer Nature under the Creative Commons Attribution 4.0 International Licence (CC BY 4.0). Full details of this licence are available at: https://creativecommons.org/licenses/by/4.0/
Acceptance date
2021-07-12
Publication date
2021-08-23
Copyright date
2021
Notes
The original version of this Article omitted the Acknowledgements: EPSRC Studentship 1801035; EPSRC Grant Nos. EP/P020232/1, EP/L000202, EP/R029431, EP/P020194. This has been corrected in both the PDF and HTML versions of the Article. 14/01/2022.