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Tunable optical properties and the role of defects on the carrier lifetimes of Cs3Sb2I9 synthesized in various solvents

Neguse, Samuel M. ; Yoon, Songhak ; Frebel, Alexander ; Jöckel, Dennis M. ; Widenmeyer, Marc ; Lange, Stefan ; Rosspeintner, Arnulf ; Ebbinghaus, Stefan G. ; Hagendorf, Christian ; Balke, Benjamin ; Weidenkaff, Anke (2023)
Tunable optical properties and the role of defects on the carrier lifetimes of Cs3Sb2I9 synthesized in various solvents.
In: Advanced Photonics Research, 4 (12)
doi: 10.1002/adpr.202300184
Artikel, Bibliographie

Dies ist die neueste Version dieses Eintrags.

Kurzbeschreibung (Abstract)

Pb-free halide perovskites have recently attracted immense attention due to the number of advantages in their optical and electronic properties. However, tuning the optical bandgap with minimized amounts of point defects is a particularly challenging task in photovoltaics. It is pivotal to clearly understand the detailed relationship between the bandgap change with defect generation and charge carrier lifetime. In this study, Cs3Sb2I9 crystals are synthesized by varied choice of solvents, namely, gamma-butyrolactone, a mixture of dimethylformamide and dimethyl sulfoxide, and hydroiodic acid. Although the same principles of decreasing solubility and crystallization are applied, Cs3Sb2I9 crystals with different size and shape in microscopic and macroscopic scale are obtained during heating and cooling of the solution. The synthesized crystals are investigated using a combination of different spectroscopies including Raman, UV-visible, and time-resolved photoluminescence. In the results, it is suggested that there is a strong relationship between Urbach energy and the lifetime of charge carriers. In this research, readily applicable practical principles and examples of how to control the defects for the advancement in Pb-free perovskite photovoltaics are provided.

Typ des Eintrags: Artikel
Erschienen: 2023
Autor(en): Neguse, Samuel M. ; Yoon, Songhak ; Frebel, Alexander ; Jöckel, Dennis M. ; Widenmeyer, Marc ; Lange, Stefan ; Rosspeintner, Arnulf ; Ebbinghaus, Stefan G. ; Hagendorf, Christian ; Balke, Benjamin ; Weidenkaff, Anke
Art des Eintrags: Bibliographie
Titel: Tunable optical properties and the role of defects on the carrier lifetimes of Cs3Sb2I9 synthesized in various solvents
Sprache: Englisch
Publikationsjahr: Oktober 2023
Verlag: Wiley-VCH
Titel der Zeitschrift, Zeitung oder Schriftenreihe: Advanced Photonics Research
Jahrgang/Volume einer Zeitschrift: 4
(Heft-)Nummer: 12
DOI: 10.1002/adpr.202300184
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Kurzbeschreibung (Abstract):

Pb-free halide perovskites have recently attracted immense attention due to the number of advantages in their optical and electronic properties. However, tuning the optical bandgap with minimized amounts of point defects is a particularly challenging task in photovoltaics. It is pivotal to clearly understand the detailed relationship between the bandgap change with defect generation and charge carrier lifetime. In this study, Cs3Sb2I9 crystals are synthesized by varied choice of solvents, namely, gamma-butyrolactone, a mixture of dimethylformamide and dimethyl sulfoxide, and hydroiodic acid. Although the same principles of decreasing solubility and crystallization are applied, Cs3Sb2I9 crystals with different size and shape in microscopic and macroscopic scale are obtained during heating and cooling of the solution. The synthesized crystals are investigated using a combination of different spectroscopies including Raman, UV-visible, and time-resolved photoluminescence. In the results, it is suggested that there is a strong relationship between Urbach energy and the lifetime of charge carriers. In this research, readily applicable practical principles and examples of how to control the defects for the advancement in Pb-free perovskite photovoltaics are provided.

Freie Schlagworte: Cs3Sb2I9, defects, photovoltaics, Raman spectroscopy, time-resolved photoluminescence, Urbach energy
Zusätzliche Informationen:

Artikel-ID: 2300184

Fachbereich(e)/-gebiet(e): 11 Fachbereich Material- und Geowissenschaften
11 Fachbereich Material- und Geowissenschaften > Materialwissenschaft
11 Fachbereich Material- und Geowissenschaften > Materialwissenschaft > Werkstofftechnik und Ressourcenmanagement
Hinterlegungsdatum: 11 Dez 2023 07:36
Letzte Änderung: 22 Mai 2024 06:05
PPN: 513963367
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