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Correlation of band bending and ionic losses in 1.68 eV wide band gap perovskite solar cells

Title: Correlation of band bending and ionic losses in 1.68 eV wide band gap perovskite solar cells
Authors: Scheler, Florian; Mariotti, Silvia; Mantione, Daniele; Shah, Sahil; Menzel, Dorothee; Köbler, Hans; Simmonds, Maxim; Gries, Thomas W.; Kurpiers, Jona; Škorjanc, Viktor; Topič, Marko
Source: Advanced energy materials, vol. 15, no. 16, 2404726, 2025. ; ISSN: 1614-6840
Publisher Information: Wiley-VCH
Publication Year: 2025
Collection: University of Ljubljana: Repository (RUJ) / Repozitorij Univerze v Ljubljani
Subject Terms: photovoltaics; solar cell; perovskite; loss analysis; fotovoltaika; sončna celica; perovskit; analiza izgub; info:eu-repo/classification/udc/621.383.51
Description: Perovskite solar cells (PSCs) are promising for high-efficiency tandem applications, but their long-term stability, particularly due to ion migration, remains a challenge. Despite progress in stabilizing PSCs, they still fall short compared to mature technologies like silicon. This study explores how different piperazinium salt treatments using iodide, chloride, tosylate, and bistriflimide anions affect the energetics, carrier dynamics, and stability of 1.68 eV bandgap PSCs. Chloride-based treatments achieved the highest power conversion efficiency (21.5%) and open-circuit voltage (1.28 V), correlating with stronger band bending and n-type character at the surface. At the same time, they showed reduced long-term stability due to increased ionic losses. Tosylate-treated devices offered the best balance, retaining 96.4% efficiency after 1000 h (ISOS-LC-1I). These findings suggest that targeted surface treatments can enhance both efficiency and stability in PSCs.
Document Type: article in journal/newspaper
File Description: application/pdf; text/url
Language: English
Relation: info:eu-repo/grantAgreement/Helmholtz%20Association//HA-2020%2F2024; info:eu-repo/grantAgreement/Ministry%20of%20Science,%20Innovation%20and%20Universities//RYC2021-031668-I; info:eu-repo/grantAgreement/ARIS//P2-0415-2022; info:eu-repo/grantAgreement/U.S.%20Department%20of%20Energy,%20Office%20of%20Energy%20Efficiency%20and%20Renewable%20Energy,%20Hydrogen%20and%20Fuel%20Cell%20Technologies%20Office,%20Energy%20Materials%20Network,%20HydroGEN%20Advanced%20Water%20Splitting%20Materials%20Consortiu//-; https://plus.cobiss.net/cobiss/si/sl/bib/227503363
Availability: https://repozitorij.uni-lj.si/IzpisGradiva.php?id=169254; https://repozitorij.uni-lj.si/Dokument.php?id=210508&dn=; https://repozitorij.uni-lj.si/Dokument.php?id=210507&dn=; https://plus.cobiss.net/cobiss/si/sl/bib/227503363; https://hdl.handle.net/20.500.12556/RUL-169254
Rights: http://creativecommons.org/licenses/by/4.0/ ; info:eu-repo/semantics/openAccess
Accession Number: edsbas.7FFD2AE2
Database: BASE