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Influence of an Organic Salt-Based Stabilizing Additive on Charge Carrier Dynamics in Triple Cation Perovskite Solar Cells.
Dörflinger, Patrick; Ding, Yong; Schmid, Valentin; Armer, Melina; Turnell-Ritson, Roland C; Ding, Bin; Dyson, Paul J; Nazeeruddin, Mohammad Khaja; Dyakonov, Vladimir.
Afiliação
  • Dörflinger P; Experimental Physics 6, Julius Maximilian University of Würzburg, 97074, Würzburg, Germany.
  • Ding Y; Institute of Chemical Sciences and Engineering, École Polytechnique Fedérale de Lausanne (EPFL), Lausanne, 1015, Switzerland.
  • Schmid V; Experimental Physics 6, Julius Maximilian University of Würzburg, 97074, Würzburg, Germany.
  • Armer M; Experimental Physics 6, Julius Maximilian University of Würzburg, 97074, Würzburg, Germany.
  • Turnell-Ritson RC; Institute of Chemical Sciences and Engineering, École Polytechnique Fedérale de Lausanne (EPFL), Lausanne, 1015, Switzerland.
  • Ding B; Institute of Chemical Sciences and Engineering, École Polytechnique Fedérale de Lausanne (EPFL), Lausanne, 1015, Switzerland.
  • Dyson PJ; Institute of Chemical Sciences and Engineering, École Polytechnique Fedérale de Lausanne (EPFL), Lausanne, 1015, Switzerland.
  • Nazeeruddin MK; Institute of Chemical Sciences and Engineering, École Polytechnique Fedérale de Lausanne (EPFL), Lausanne, 1015, Switzerland.
  • Dyakonov V; Experimental Physics 6, Julius Maximilian University of Würzburg, 97074, Würzburg, Germany.
Adv Sci (Weinh) ; 10(34): e2304502, 2023 Dec.
Article em En | MEDLINE | ID: mdl-37807807
ABSTRACT
Besides further improvement in the power conversion efficiency (PCE) of perovskite solar cells (PSC), their long-term stability must also be ensured. Additives such as organic cations with halide counter anions are considered promising candidates to address this challenge, conferring both higher performance and increased stability to perovskite-based devices. Here, a stabilizing additive (N,N-dimethylmethyleneiminium chloride, [Dmmim]Cl) is identified, and its effect on charge carrier mobility and lifetime under thermal stress in triple cation perovskite (Cs0.05 MA0.05 FA0.90 PbI3 ) thin films is investigated. To explore the fundamental mechanisms limiting charge carrier mobility, temperature-dependent microwave conductivity measurements are performed. Different mobility behaviors across two temperature regions are revealed, following the power law Tm , indicating two different dominant scattering mechanisms. The low-temperature region is assigned to charge carrier scattering with polar optical phonons, while a strong decrease in mobility at high temperatures is due to dynamic disorder. The results obtained rationalize the improved stability of the [Dmmim]Cl-doped films and devices compared to the undoped reference samples, by limiting temperature-activated mobile ions and retarding degradation of the perovskite film.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article