Publication: Post-Synthetic Silver Ion and Sulfurization Treatment for Enhanced Performance in Sb$_2$Se$_3$ Water Splitting Photocathodes
Post-Synthetic Silver Ion and Sulfurization Treatment for Enhanced Performance in Sb$_2$Se$_3$ Water Splitting Photocathodes
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Adams, P., Schnyder, R., Moehl, T., Bühler, J., Alvarez, A. L., Dimitrievska, M., McKenna, K., Yang, W., & Tilley, S. D. (2024). Post-Synthetic Silver Ion and Sulfurization Treatment for Enhanced Performance in Sb$_2$Se$_3$ Water Splitting Photocathodes. Advanced Functional Materials, 34, 2310596. https://doi.org/10.1002/adfm.202310596
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In the past decade, antimony selenide (Sb$_2$Se$_3$) has made significant progress as a solar energy conversion material. However, the photovoltage deficit continues to pose a challenge and is a major hurdle that must be overcome to reach its maximum solar conversion efficiency. In this study, various post-synthetic treatments are employed, of which the combination of a solution phase silver nitrate treatment and sulfurization has shown to be the most effective approach to mitigate the photovoltage deficit in this Sb$_2$Se$_3$
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Adams, P., Schnyder, R., Moehl, T., Bühler, J., Alvarez, A. L., Dimitrievska, M., McKenna, K., Yang, W., & Tilley, S. D. (2024). Post-Synthetic Silver Ion and Sulfurization Treatment for Enhanced Performance in Sb$_2$Se$_3$ Water Splitting Photocathodes. Advanced Functional Materials, 34, 2310596. https://doi.org/10.1002/adfm.202310596