Sodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers
Sodium doping is necessary to achieve high performance in polycrystalline chalcopyrite solar cells, but retards gallium interdiffusion, and thus efficiency optimisation. Here, Colombara et al. show that in contrast to the polycrystalline case, sodium accelerates atomic interdiffusion in monocrystall...
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Nature Portfolio
2018
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oai:doaj.org-article:ba7702d0d3174cccbd2cefd1b00e3a8b2021-12-02T16:49:55ZSodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers10.1038/s41467-018-03115-02041-1723https://doaj.org/article/ba7702d0d3174cccbd2cefd1b00e3a8b2018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03115-0https://doaj.org/toc/2041-1723Sodium doping is necessary to achieve high performance in polycrystalline chalcopyrite solar cells, but retards gallium interdiffusion, and thus efficiency optimisation. Here, Colombara et al. show that in contrast to the polycrystalline case, sodium accelerates atomic interdiffusion in monocrystalline samples.Diego ColombaraFlorian WernerTorsten SchwarzIngrid Cañero InfanteYves FlemingNathalie ValleConrad SpindlerErica VacchieriGermain ReyMael GuennouMuriel BouttemyAlba Garzón ManjónInmaculada Peral AlonsoMichele MelchiorreBrahime El AdibBaptiste GaultDierk RaabePhillip J. DaleSusanne SiebentrittNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-12 (2018) |
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Science Q Diego Colombara Florian Werner Torsten Schwarz Ingrid Cañero Infante Yves Fleming Nathalie Valle Conrad Spindler Erica Vacchieri Germain Rey Mael Guennou Muriel Bouttemy Alba Garzón Manjón Inmaculada Peral Alonso Michele Melchiorre Brahime El Adib Baptiste Gault Dierk Raabe Phillip J. Dale Susanne Siebentritt Sodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers |
description |
Sodium doping is necessary to achieve high performance in polycrystalline chalcopyrite solar cells, but retards gallium interdiffusion, and thus efficiency optimisation. Here, Colombara et al. show that in contrast to the polycrystalline case, sodium accelerates atomic interdiffusion in monocrystalline samples. |
format |
article |
author |
Diego Colombara Florian Werner Torsten Schwarz Ingrid Cañero Infante Yves Fleming Nathalie Valle Conrad Spindler Erica Vacchieri Germain Rey Mael Guennou Muriel Bouttemy Alba Garzón Manjón Inmaculada Peral Alonso Michele Melchiorre Brahime El Adib Baptiste Gault Dierk Raabe Phillip J. Dale Susanne Siebentritt |
author_facet |
Diego Colombara Florian Werner Torsten Schwarz Ingrid Cañero Infante Yves Fleming Nathalie Valle Conrad Spindler Erica Vacchieri Germain Rey Mael Guennou Muriel Bouttemy Alba Garzón Manjón Inmaculada Peral Alonso Michele Melchiorre Brahime El Adib Baptiste Gault Dierk Raabe Phillip J. Dale Susanne Siebentritt |
author_sort |
Diego Colombara |
title |
Sodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers |
title_short |
Sodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers |
title_full |
Sodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers |
title_fullStr |
Sodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers |
title_full_unstemmed |
Sodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers |
title_sort |
sodium enhances indium-gallium interdiffusion in copper indium gallium diselenide photovoltaic absorbers |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/ba7702d0d3174cccbd2cefd1b00e3a8b |
work_keys_str_mv |
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