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Deterministic fabrication of 3D/2D perovskite bilayer stacks for durable and efficient solar cells

Authors :
Sidhik, Siraj
Wang, Yafei
De Siena, Michael
Asadpour, Reza
Torma, Andrew J.
Terlier, Tanguy
Ho, Kevin
Li, Wenbin
Puthirath, Anand B.
Shuai, Xinting
Agrawal, Ayush
Traore, Boubacar
Jones, Matthew
Giridharagopal, Rajiv
Ajayan, Pulickel M.
Strzalka, Joseph
Ginger, David S.
Katan, Claudine
Alam, Muhammad Ashraful
Even, Jacky
Kanatzidis, Mercouri G.
Mohite, Aditya D.
Rice University [Houston]
Northwestern University [Evanston]
Purdue University [West Lafayette]
University of Washington [Seattle]
Institut des Sciences Chimiques de Rennes (ISCR)
Université de Rennes (UR)-Institut National des Sciences Appliquées - Rennes (INSA Rennes)
Institut National des Sciences Appliquées (INSA)-Institut National des Sciences Appliquées (INSA)-Ecole Nationale Supérieure de Chimie de Rennes (ENSCR)-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS)
Argonne National Laboratory [Lemont] (ANL)
Institut des Fonctions Optiques pour les Technologies de l'informatiON (Institut FOTON)
Institut National des Sciences Appliquées (INSA)-Institut National des Sciences Appliquées (INSA)-École Nationale Supérieure des Sciences Appliquées et de Technologie (ENSSAT)-Centre National de la Recherche Scientifique (CNRS)
J.E. acknowledges the financial support from the Institut Universitaire de France. This work was granted access to the HPC resources of [TGCC/CINES/IDRIS] under the allocations 2021-A0090907682 made by GENCI.
European Project: PeroCUBE
Source :
Science, Science, 2022, 377 (6613), pp.1425-1430. ⟨10.1126/science.abq7652⟩
Publication Year :
2022
Publisher :
American Association for the Advancement of Science (AAAS), 2022.

Abstract

Realizing solution-processed heterostructures is a long-enduring challenge in halide perovskites because of solvent incompatibilities that disrupt the underlying layer. By leveraging the solvent dielectric constant and Gutmann donor number, we could grow phase-pure two-dimensional (2D) halide perovskite stacks of the desired composition, thickness, and bandgap onto 3D perovskites without dissolving the underlying substrate. Characterization reveals a 3D–2D transition region of 20 nanometers mainly determined by the roughness of the bottom 3D layer. Thickness dependence of the 2D perovskite layer reveals the anticipated trends for n-i-p and p-i-n architectures, which is consistent with band alignment and carrier transport limits for 2D perovskites. We measured a photovoltaic efficiency of 24.5%, with exceptional stability of T 99 (time required to preserve 99% of initial photovoltaic efficiency) of >2000 hours, implying that the 3D/2D bilayer inherits the intrinsic durability of 2D perovskite without compromising efficiency.

Details

ISSN :
10959203 and 00368075
Volume :
377
Database :
OpenAIRE
Journal :
Science
Accession number :
edsair.doi.dedup.....3f32f0562519ebdf4351cac3b6e4caf7
Full Text :
https://doi.org/10.1126/science.abq7652