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Selenium passivates grain boundaries in alloyed CdTe solar cells

Fiducia, Thomas; Howkins, Ashley; Abbas, Ali; Mendis, Budhika; Munshi, Amit; Barth, Kurt; Sampath, Walajabad; Walls, John

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Authors

Thomas Fiducia

Ashley Howkins

Ali Abbas

Amit Munshi

Kurt Barth

Walajabad Sampath

John Walls



Abstract

Cadmium telluride (CdTe) solar cells have achieved efficiencies of over 22%, despite having absorber layer grain sizes less than 10 μm and hence a very high density of grain boundaries. Recent research has shown that this is possible because of partial passivation of grain boundaries during the widely used cadmium chloride treatment, and passivation of grain interior defects by selenium alloying of the CdTe. Here, state-of-the art TEM-based cathodoluminescence imaging is used to show that, in addition to grain interiors, selenium also passivates grain boundaries in alloyed Cd(Sex,Te1-x) material (CST). Specifically, we find that recombination at CST grain boundaries is up to an order of magnitude lower than at CdTe grain boundaries. This further explains the superior performance of selenium graded CdTe devices and provides potential new routes for further efficiency improvement and solar electricity cost reduction.

Citation

Fiducia, T., Howkins, A., Abbas, A., Mendis, B., Munshi, A., Barth, K., …Walls, J. (2022). Selenium passivates grain boundaries in alloyed CdTe solar cells. Solar Energy Materials and Solar Cells, 238, Article 111595. https://doi.org/10.1016/j.solmat.2022.111595

Journal Article Type Article
Acceptance Date Jan 8, 2022
Online Publication Date Feb 8, 2022
Publication Date 2022-05
Deposit Date Mar 28, 2022
Publicly Available Date Mar 29, 2024
Journal Solar Energy Materials and Solar Cells
Print ISSN 0927-0248
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 238
Article Number 111595
DOI https://doi.org/10.1016/j.solmat.2022.111595

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