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  5. 2D/3D Hybrid Cs₂AgBiBr₆ Double Perovskite Solar Cells: Improved Energy Level Alignment for Higher Contact‐Selectivity and Large Open Circuit Voltage
 
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2022
Zweitveröffentlichung
Artikel
Verlagsversion

2D/3D Hybrid Cs₂AgBiBr₆ Double Perovskite Solar Cells: Improved Energy Level Alignment for Higher Contact‐Selectivity and Large Open Circuit Voltage

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AENM_AENM202103215.pdf
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TUDa URI
tuda/10804
URN
urn:nbn:de:tuda-tuprints-243158
DOI
10.26083/tuprints-00024315
Autor:innen
Sirtl, Maximilian T. ORCID 0000-0002-2860-4223
Hooijer, Rik ORCID 0000-0002-0038-2649
Armer, Melina ORCID 0000-0002-1716-4648
Ebadi, Firouzeh G. ORCID 0000-0002-7374-4479
Mohammadi, Mahdi
Maheu, Clément ORCID 0000-0001-5417-5672
Weis, Andreas ORCID 0000-0003-0128-4116
Gorkom, Bas T. van
Häringer, Sebastian ORCID 0000-0001-6379-5371
Janssen, René A. J. ORCID 0000-0002-1920-5124
Mayer, Thomas
Dyakonov, Vladimir ORCID 0000-0001-8725-9573
Tress, Wolfgang ORCID 0000-0002-4010-239X
Bein, Thomas ORCID 0000-0001-7248-5906
Kurzbeschreibung (Abstract)

Since their introduction in 2017, the efficiency of lead‐free halide perovskite solar cells based on Cs₂AgBiBr₆ has not exceeded 3%. The limiting bottlenecks are attributed to a low electron diffusion length, self‐trapping events and poor selectivity of the contacts, leading to large non‐radiative VOC losses. Here, 2D/3D hybrid double perovskites are introduced for the first time, using phenethyl ammonium as the constituting cation. The resulting solar cells show an increased efficiency of up to 2.5% for the champion cells and 2.03% on average, marking an improvement by 10% compared to the 3D reference on mesoporous TiO₂. The effect is mainly due to a VOC improvement by up to 70 mV on average, yielding a maximum VOC of 1.18 V using different concentrations of phenethylammonium bromide. While these are among the highest reported VOC values for Cs₂AgBiBr₆ solar cells, the effect is attributed to a change in recombination behavior within the full device and a better selectivity at the interface toward the hole transporting material (HTM). This explanation is supported by voltage‐dependent external quantum efficiency, as well as photoelectron spectroscopy, revealing a better energy level alignment and thus a better hole‐extraction and improved electron blocking at the HTM interface.

Freie Schlagworte

2D perovskites

2D/3D hybrid perovski...

Cs₂AgBiBr₆

double perovskites

solar cells

Sprache
Englisch
Fachbereich/-gebiet
11 Fachbereich Material- und Geowissenschaften > Materialwissenschaft > Fachgebiet Oberflächenforschung
DDC
600 Technik, Medizin, angewandte Wissenschaften > 660 Technische Chemie
Institution
Universitäts- und Landesbibliothek Darmstadt
Ort
Darmstadt
Titel der Zeitschrift / Schriftenreihe
Advanced Energy Materials
Jahrgang der Zeitschrift
12
Heftnummer der Zeitschrift
7
ISSN
1614-6840
Verlag
Wiley-VCH
Ort der Erstveröffentlichung
Weinheim
Publikationsjahr der Erstveröffentlichung
2022
Verlags-DOI
10.1002/aenm.202103215
PPN
515072303
Artikel-ID
2103215

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