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A promising 1D Cd-based hybrid perovskite-type for white-light emission with high-color-rendering index

A one dimensional (1D) perovskite-type (C(6)H(7)NBr)(3)[CdBr(5)] (abbreviated 4-BAPC) was synthesized by slow evaporation at room temperature (RT). 4-BAPC crystalizes in the monoclinic system with the space group P2(1)/c. The 1D inorganic chains are formed by corner sharing CdBr(6) octahedra. Therma...

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Autores principales: Gassara, Mahdi, Msalmi, Rawia, Liu, Xinghui, Hassen, Fredj, Moliterni, Anna, Ben Hamadi, Naoufel, Guesmi, Ahlem, Khezami, Lotfi, Soltani, Taoufik, Naïli, Houcine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9682491/
https://www.ncbi.nlm.nih.gov/pubmed/36505725
http://dx.doi.org/10.1039/d2ra04676h
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author Gassara, Mahdi
Msalmi, Rawia
Liu, Xinghui
Hassen, Fredj
Moliterni, Anna
Ben Hamadi, Naoufel
Guesmi, Ahlem
Khezami, Lotfi
Soltani, Taoufik
Naïli, Houcine
author_facet Gassara, Mahdi
Msalmi, Rawia
Liu, Xinghui
Hassen, Fredj
Moliterni, Anna
Ben Hamadi, Naoufel
Guesmi, Ahlem
Khezami, Lotfi
Soltani, Taoufik
Naïli, Houcine
author_sort Gassara, Mahdi
collection PubMed
description A one dimensional (1D) perovskite-type (C(6)H(7)NBr)(3)[CdBr(5)] (abbreviated 4-BAPC) was synthesized by slow evaporation at room temperature (RT). 4-BAPC crystalizes in the monoclinic system with the space group P2(1)/c. The 1D inorganic chains are formed by corner sharing CdBr(6) octahedra. Thermal measurement shows that 4-BAPC is stable up to 190 °C. Optical characterization demonstrates that the grown crystal is an indirect bandgap material with a bandgap value of 3.93 eV, which is consistent with theoretical calculations. The electronic structure, calculated using density functional theory, reveals that the valence band originates from a combination of Br-4p orbitals and Cd-4d orbitals, whereas the conduction band originates from the Cd-5s orbitals. The photoluminescence spectroscopy shows that the obtained material exhibits a broad-band white light emission with extra-high CRI of 98 under λ(exc) = 380 nm. This emission is mainly resulting from the self-trapped exciton recombinations within the inorganic CdBr(6) octahedron, and the fluorescence within the organic conjugated ammonium salt.
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spelling pubmed-96824912022-12-08 A promising 1D Cd-based hybrid perovskite-type for white-light emission with high-color-rendering index Gassara, Mahdi Msalmi, Rawia Liu, Xinghui Hassen, Fredj Moliterni, Anna Ben Hamadi, Naoufel Guesmi, Ahlem Khezami, Lotfi Soltani, Taoufik Naïli, Houcine RSC Adv Chemistry A one dimensional (1D) perovskite-type (C(6)H(7)NBr)(3)[CdBr(5)] (abbreviated 4-BAPC) was synthesized by slow evaporation at room temperature (RT). 4-BAPC crystalizes in the monoclinic system with the space group P2(1)/c. The 1D inorganic chains are formed by corner sharing CdBr(6) octahedra. Thermal measurement shows that 4-BAPC is stable up to 190 °C. Optical characterization demonstrates that the grown crystal is an indirect bandgap material with a bandgap value of 3.93 eV, which is consistent with theoretical calculations. The electronic structure, calculated using density functional theory, reveals that the valence band originates from a combination of Br-4p orbitals and Cd-4d orbitals, whereas the conduction band originates from the Cd-5s orbitals. The photoluminescence spectroscopy shows that the obtained material exhibits a broad-band white light emission with extra-high CRI of 98 under λ(exc) = 380 nm. This emission is mainly resulting from the self-trapped exciton recombinations within the inorganic CdBr(6) octahedron, and the fluorescence within the organic conjugated ammonium salt. The Royal Society of Chemistry 2022-11-23 /pmc/articles/PMC9682491/ /pubmed/36505725 http://dx.doi.org/10.1039/d2ra04676h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Gassara, Mahdi
Msalmi, Rawia
Liu, Xinghui
Hassen, Fredj
Moliterni, Anna
Ben Hamadi, Naoufel
Guesmi, Ahlem
Khezami, Lotfi
Soltani, Taoufik
Naïli, Houcine
A promising 1D Cd-based hybrid perovskite-type for white-light emission with high-color-rendering index
title A promising 1D Cd-based hybrid perovskite-type for white-light emission with high-color-rendering index
title_full A promising 1D Cd-based hybrid perovskite-type for white-light emission with high-color-rendering index
title_fullStr A promising 1D Cd-based hybrid perovskite-type for white-light emission with high-color-rendering index
title_full_unstemmed A promising 1D Cd-based hybrid perovskite-type for white-light emission with high-color-rendering index
title_short A promising 1D Cd-based hybrid perovskite-type for white-light emission with high-color-rendering index
title_sort promising 1d cd-based hybrid perovskite-type for white-light emission with high-color-rendering index
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9682491/
https://www.ncbi.nlm.nih.gov/pubmed/36505725
http://dx.doi.org/10.1039/d2ra04676h
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