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Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis

[Image: see text] Organic–inorganic Pb-free layered perovskites are efficient broadband emitters and thus are promising materials for lighting applications. However, their synthetic protocols require a controlled atmosphere, high temperature, and long preparation time. This hinders the potential tun...

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Autores principales: Prabhakaran, Aarya, Dhanabalan, Balaji, Andrusenko, Iryna, Pianetti, Andrea, Lauciello, Simone, Prato, Mirko, Marras, Sergio, Solokha, Pavlo, Gemmi, Mauro, Brovelli, Sergio, Manna, Liberato, Arciniegas, Milena P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10262684/
https://www.ncbi.nlm.nih.gov/pubmed/37324542
http://dx.doi.org/10.1021/acsenergylett.3c00791
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author Prabhakaran, Aarya
Dhanabalan, Balaji
Andrusenko, Iryna
Pianetti, Andrea
Lauciello, Simone
Prato, Mirko
Marras, Sergio
Solokha, Pavlo
Gemmi, Mauro
Brovelli, Sergio
Manna, Liberato
Arciniegas, Milena P.
author_facet Prabhakaran, Aarya
Dhanabalan, Balaji
Andrusenko, Iryna
Pianetti, Andrea
Lauciello, Simone
Prato, Mirko
Marras, Sergio
Solokha, Pavlo
Gemmi, Mauro
Brovelli, Sergio
Manna, Liberato
Arciniegas, Milena P.
author_sort Prabhakaran, Aarya
collection PubMed
description [Image: see text] Organic–inorganic Pb-free layered perovskites are efficient broadband emitters and thus are promising materials for lighting applications. However, their synthetic protocols require a controlled atmosphere, high temperature, and long preparation time. This hinders the potential tunability of their emission through organic cations, as is instead common practice in Pb-based structures. Here, we present a set of Sn–Br layered perovskite-related structures that display different chromaticity coordinates and photoluminescence quantum yield (PLQY) up to 80%, depending on the choice of the organic monocation. We first develop a synthetic protocol that is performed under air and at 4 °C, requiring only a few steps. X-ray and 3D electron diffraction analyses show that the structures exhibit diverse octahedra connectivity (disconnected and face-sharing) and thus optical properties, while preserving the organic–inorganic layer intercalation. These results provide key insight into a previously underexplored strategy to tune the color coordinates of Pb-free layered perovskites through organic cations with complex molecular configurations.
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spelling pubmed-102626842023-06-15 Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis Prabhakaran, Aarya Dhanabalan, Balaji Andrusenko, Iryna Pianetti, Andrea Lauciello, Simone Prato, Mirko Marras, Sergio Solokha, Pavlo Gemmi, Mauro Brovelli, Sergio Manna, Liberato Arciniegas, Milena P. ACS Energy Lett [Image: see text] Organic–inorganic Pb-free layered perovskites are efficient broadband emitters and thus are promising materials for lighting applications. However, their synthetic protocols require a controlled atmosphere, high temperature, and long preparation time. This hinders the potential tunability of their emission through organic cations, as is instead common practice in Pb-based structures. Here, we present a set of Sn–Br layered perovskite-related structures that display different chromaticity coordinates and photoluminescence quantum yield (PLQY) up to 80%, depending on the choice of the organic monocation. We first develop a synthetic protocol that is performed under air and at 4 °C, requiring only a few steps. X-ray and 3D electron diffraction analyses show that the structures exhibit diverse octahedra connectivity (disconnected and face-sharing) and thus optical properties, while preserving the organic–inorganic layer intercalation. These results provide key insight into a previously underexplored strategy to tune the color coordinates of Pb-free layered perovskites through organic cations with complex molecular configurations. American Chemical Society 2023-05-16 /pmc/articles/PMC10262684/ /pubmed/37324542 http://dx.doi.org/10.1021/acsenergylett.3c00791 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Prabhakaran, Aarya
Dhanabalan, Balaji
Andrusenko, Iryna
Pianetti, Andrea
Lauciello, Simone
Prato, Mirko
Marras, Sergio
Solokha, Pavlo
Gemmi, Mauro
Brovelli, Sergio
Manna, Liberato
Arciniegas, Milena P.
Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis
title Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis
title_full Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis
title_fullStr Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis
title_full_unstemmed Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis
title_short Stable Sn-Based Hybrid Perovskite-Related Structures with Tunable Color Coordinates via Organic Cations in Low-Temperature Synthesis
title_sort stable sn-based hybrid perovskite-related structures with tunable color coordinates via organic cations in low-temperature synthesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10262684/
https://www.ncbi.nlm.nih.gov/pubmed/37324542
http://dx.doi.org/10.1021/acsenergylett.3c00791
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