The effect of a band gap gradient on the radiative losses in the open circuit voltage of solar cells

Fuente: arXiv
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Main Authors: Gharabeiki, Sevan, Lodola, Francesco, Schaaf, Tilly, Wang, Taowen, Melchiorre, Michele, Valle, Nathalie, Niclout, Jérémy, Ali, Manha, Hu, Yucheng, Kusch, Gunnar, Oliver, Rachel A., Siebentritt, Susanne
Format: Preprint
Published: 2025
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author Gharabeiki, Sevan
Lodola, Francesco
Schaaf, Tilly
Wang, Taowen
Melchiorre, Michele
Valle, Nathalie
Niclout, Jérémy
Ali, Manha
Hu, Yucheng
Kusch, Gunnar
Oliver, Rachel A.
Siebentritt, Susanne
author_facet Gharabeiki, Sevan
Lodola, Francesco
Schaaf, Tilly
Wang, Taowen
Melchiorre, Michele
Valle, Nathalie
Niclout, Jérémy
Ali, Manha
Hu, Yucheng
Kusch, Gunnar
Oliver, Rachel A.
Siebentritt, Susanne
contents The radiative open circuit voltage loss in a solar cell occurs because the absorptance spectrum near the band gap shows gradual increase rather than sharp step function like transition. This broadening effect has been attributed to band gap fluctuations and or to Urbach tails. In this report, we use modelling based on Planck s generalized law to distinguish between these two effects. Our results demonstrate that Urbach tails have only a minimal effect on the absorptance edge broadening and clarify that even an ideal direct semiconductor with no band gap fluctuations shows broadening at the absorptance onset. Furthermore, state of the art inorganic thin film solar cells often incorporate a band gap gradient across their thickness, which can further contribute to absorptance broadening. Using Cu(In,Ga)Se2 (CIGSe) absorbers as a case study, we perform a comprehensive analysis of voltage losses through absolute photoluminescence and electroluminescence spectroscopy, combined with photospectrometry and high-spatial-resolution cathodoluminescence measurements. We find that the loss analysis based on the combination of radiative, generation and non-radiative losses is complete. Samples with a graded band gap profile show more pronounced broadening of the absorptance onset and up to 16 mV higher radiative losses compared to the samples with uniform band gap. There is indication, that band gap-graded samples also have larger lateral band gap inhomogeneity.
format Preprint
id arxiv_https___arxiv_org_abs_2503_14077
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The effect of a band gap gradient on the radiative losses in the open circuit voltage of solar cells
Gharabeiki, Sevan
Lodola, Francesco
Schaaf, Tilly
Wang, Taowen
Melchiorre, Michele
Valle, Nathalie
Niclout, Jérémy
Ali, Manha
Hu, Yucheng
Kusch, Gunnar
Oliver, Rachel A.
Siebentritt, Susanne
Materials Science
The radiative open circuit voltage loss in a solar cell occurs because the absorptance spectrum near the band gap shows gradual increase rather than sharp step function like transition. This broadening effect has been attributed to band gap fluctuations and or to Urbach tails. In this report, we use modelling based on Planck s generalized law to distinguish between these two effects. Our results demonstrate that Urbach tails have only a minimal effect on the absorptance edge broadening and clarify that even an ideal direct semiconductor with no band gap fluctuations shows broadening at the absorptance onset. Furthermore, state of the art inorganic thin film solar cells often incorporate a band gap gradient across their thickness, which can further contribute to absorptance broadening. Using Cu(In,Ga)Se2 (CIGSe) absorbers as a case study, we perform a comprehensive analysis of voltage losses through absolute photoluminescence and electroluminescence spectroscopy, combined with photospectrometry and high-spatial-resolution cathodoluminescence measurements. We find that the loss analysis based on the combination of radiative, generation and non-radiative losses is complete. Samples with a graded band gap profile show more pronounced broadening of the absorptance onset and up to 16 mV higher radiative losses compared to the samples with uniform band gap. There is indication, that band gap-graded samples also have larger lateral band gap inhomogeneity.
title The effect of a band gap gradient on the radiative losses in the open circuit voltage of solar cells
topic Materials Science
url https://arxiv.org/abs/2503.14077