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Highly Luminescent Transparent Cs 2 Ag x Na 1– x Bi y In 1– y Cl 6 Perovskite Films Produced by Single-Source Vacuum Deposition

Authors :
Oleksandr Stroyuk
Oleksandra Raievska
Paz Sebastia-Luna
Bas A. H. Huisman
Christian Kupfer
Anastasia Barabash
Jens Hauch
Henk J. Bolink
Christoph J. Brabec
Source :
ACS materials letters 5(2), 596–602 (2023). doi:10.1021/acsmaterialslett.3c00034, Stroyuk, Oleksandr Raievska, Oleksandra Sebastia-Luna, Paz Huisman, Bas A. H. Kupfer, Christian Barabash, Anastasia Hauch, Jens Bolink, Henk Brabec, Christoph J. 2023 Highly Luminescent Transparent Cs2AgxNa1−xBiyIn1−yCl6 Perovskite Films Produced by Single-Source Vacuum Deposition Acs Materials Letters 5 2 596 602
Publication Year :
2023
Publisher :
ACS Publications, 2023.

Abstract

Thermal deposition of halide perovskites as a universal and scalable route to transparent thin films becomes highly challenging in the case of lead-free double perovskites, requiring the evaporation dynamics of multiple metal halide sources to be balanced or a single-phase precursor preliminary synthesized to achieve a reliable control over the composition and the phase of the final films. In the present Letter, the feasibility of the single-source vacuum deposition of microcrystalline Cs2AgxNa1-xBiyIn1-yCl6 double perovskites into corresponding transparent nanocrystalline films while preserving the bulk spectral and structural properties is shown. The perovskite films produced from the most emissive powders with x = 0.40 and y = 0.01 revealed a photoluminescence quantum yield of 85%, highlighting thermal evaporation as a promising approach to functional perovskite-based optical materials.

Details

Language :
English
Database :
OpenAIRE
Journal :
ACS materials letters 5(2), 596–602 (2023). doi:10.1021/acsmaterialslett.3c00034, Stroyuk, Oleksandr Raievska, Oleksandra Sebastia-Luna, Paz Huisman, Bas A. H. Kupfer, Christian Barabash, Anastasia Hauch, Jens Bolink, Henk Brabec, Christoph J. 2023 Highly Luminescent Transparent Cs2AgxNa1−xBiyIn1−yCl6 Perovskite Films Produced by Single-Source Vacuum Deposition Acs Materials Letters 5 2 596 602
Accession number :
edsair.doi.dedup.....6ea1bfa66f760c87f966ab6d27405ff1
Full Text :
https://doi.org/10.1021/acsmaterialslett.3c00034