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Large-Area Nanocrystalline Caesium Lead Chloride Thin Films: A Focus on the Exciton Recombination Dynamics

Caesium lead halide perovskites were recently demonstrated to be a relevant class of semiconductors for photonics and optoelectronics. Unlike CsPbBr(3) and CsPbI(3), the realization of high-quality thin films of CsPbCl(3), particularly interesting for highly efficient white LEDs when coupled to conv...

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Autores principales: Falsini, Naomi, Calisi, Nicola, Roini, Giammarco, Ristori, Andrea, Biccari, Francesco, Scardi, Paolo, Barri, Chiara, Bollani, Monica, Caporali, Stefano, Vinattieri, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7915012/
https://www.ncbi.nlm.nih.gov/pubmed/33572135
http://dx.doi.org/10.3390/nano11020434
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author Falsini, Naomi
Calisi, Nicola
Roini, Giammarco
Ristori, Andrea
Biccari, Francesco
Scardi, Paolo
Barri, Chiara
Bollani, Monica
Caporali, Stefano
Vinattieri, Anna
author_facet Falsini, Naomi
Calisi, Nicola
Roini, Giammarco
Ristori, Andrea
Biccari, Francesco
Scardi, Paolo
Barri, Chiara
Bollani, Monica
Caporali, Stefano
Vinattieri, Anna
author_sort Falsini, Naomi
collection PubMed
description Caesium lead halide perovskites were recently demonstrated to be a relevant class of semiconductors for photonics and optoelectronics. Unlike CsPbBr(3) and CsPbI(3), the realization of high-quality thin films of CsPbCl(3), particularly interesting for highly efficient white LEDs when coupled to converting phosphors, is still a very demanding task. In this work we report the first successful deposition of nanocrystalline CsPbCl(3) thin films (70–150 nm) by radio frequency magnetron sputtering on large-area substrates. We present a detailed investigation of the optical properties by high resolution photoluminescence (PL) spectroscopy, resolved in time and space in the range 10–300 K, providing quantitative information concerning carriers and excitons recombination dynamics. The PL is characterized by a limited inhomogeneous broadening (~15 meV at 10 K) and its origin is discussed from detailed analysis with investigations at the micro-scale. The samples, obtained without any post-growth treatment, show a homogeneous PL emission in spectrum and intensity on large sample areas (several cm(2)). Temperature dependent and time-resolved PL spectra elucidate the role of carrier trapping in determining the PL quenching up to room temperature. Our results open the route for the realization of large-area inorganic halide perovskite films for photonic and optoelectronic devices.
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spelling pubmed-79150122021-03-01 Large-Area Nanocrystalline Caesium Lead Chloride Thin Films: A Focus on the Exciton Recombination Dynamics Falsini, Naomi Calisi, Nicola Roini, Giammarco Ristori, Andrea Biccari, Francesco Scardi, Paolo Barri, Chiara Bollani, Monica Caporali, Stefano Vinattieri, Anna Nanomaterials (Basel) Article Caesium lead halide perovskites were recently demonstrated to be a relevant class of semiconductors for photonics and optoelectronics. Unlike CsPbBr(3) and CsPbI(3), the realization of high-quality thin films of CsPbCl(3), particularly interesting for highly efficient white LEDs when coupled to converting phosphors, is still a very demanding task. In this work we report the first successful deposition of nanocrystalline CsPbCl(3) thin films (70–150 nm) by radio frequency magnetron sputtering on large-area substrates. We present a detailed investigation of the optical properties by high resolution photoluminescence (PL) spectroscopy, resolved in time and space in the range 10–300 K, providing quantitative information concerning carriers and excitons recombination dynamics. The PL is characterized by a limited inhomogeneous broadening (~15 meV at 10 K) and its origin is discussed from detailed analysis with investigations at the micro-scale. The samples, obtained without any post-growth treatment, show a homogeneous PL emission in spectrum and intensity on large sample areas (several cm(2)). Temperature dependent and time-resolved PL spectra elucidate the role of carrier trapping in determining the PL quenching up to room temperature. Our results open the route for the realization of large-area inorganic halide perovskite films for photonic and optoelectronic devices. MDPI 2021-02-09 /pmc/articles/PMC7915012/ /pubmed/33572135 http://dx.doi.org/10.3390/nano11020434 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Falsini, Naomi
Calisi, Nicola
Roini, Giammarco
Ristori, Andrea
Biccari, Francesco
Scardi, Paolo
Barri, Chiara
Bollani, Monica
Caporali, Stefano
Vinattieri, Anna
Large-Area Nanocrystalline Caesium Lead Chloride Thin Films: A Focus on the Exciton Recombination Dynamics
title Large-Area Nanocrystalline Caesium Lead Chloride Thin Films: A Focus on the Exciton Recombination Dynamics
title_full Large-Area Nanocrystalline Caesium Lead Chloride Thin Films: A Focus on the Exciton Recombination Dynamics
title_fullStr Large-Area Nanocrystalline Caesium Lead Chloride Thin Films: A Focus on the Exciton Recombination Dynamics
title_full_unstemmed Large-Area Nanocrystalline Caesium Lead Chloride Thin Films: A Focus on the Exciton Recombination Dynamics
title_short Large-Area Nanocrystalline Caesium Lead Chloride Thin Films: A Focus on the Exciton Recombination Dynamics
title_sort large-area nanocrystalline caesium lead chloride thin films: a focus on the exciton recombination dynamics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7915012/
https://www.ncbi.nlm.nih.gov/pubmed/33572135
http://dx.doi.org/10.3390/nano11020434
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