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First-principles study on structural, electronic and optical properties of halide double perovskite Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I)

All-inorganic halide double perovskites (HDPs) attract significant attention in the field of perovskite solar cells (PSCs) and light-emitting diodes. In this work, we present a first-principles study on structural, elastic, electronic and optical properties of all-inorganic HDPs Cs(2)AgBX(6) (B = In...

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Autores principales: Yu, Chol-Jun, Ri, Il-Chol, Ri, Hak-Myong, Jang, Jong-Hyok, Kim, Yun-Sim, Jong, Un-Gi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10227528/
https://www.ncbi.nlm.nih.gov/pubmed/37260569
http://dx.doi.org/10.1039/d3ra02566g
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author Yu, Chol-Jun
Ri, Il-Chol
Ri, Hak-Myong
Jang, Jong-Hyok
Kim, Yun-Sim
Jong, Un-Gi
author_facet Yu, Chol-Jun
Ri, Il-Chol
Ri, Hak-Myong
Jang, Jong-Hyok
Kim, Yun-Sim
Jong, Un-Gi
author_sort Yu, Chol-Jun
collection PubMed
description All-inorganic halide double perovskites (HDPs) attract significant attention in the field of perovskite solar cells (PSCs) and light-emitting diodes. In this work, we present a first-principles study on structural, elastic, electronic and optical properties of all-inorganic HDPs Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I), aiming at finding the possibility of using them as photoabsorbers for PSCs. Confirming that the cubic perovskite structure can be formed safely thanks to the proper geometric factors, we find that the lattice constants are gradually increased on increasing the atomic number of the halogen atom from F to I, indicating the weakening of Ag–X and B–X interactions. Our calculations reveal that all the perovskite compounds are mechanically stable due to their elastic constants satisfying the stability criteria, whereas only the Cl-based compounds are dynamically stable in the cubic phase by observing their phonon dispersions without soft modes. The electronic band structures are calculated with the Heyd–Scuseria–Ernzerhof hybrid functional, demonstrating that the In (Sb)-based HDPs show direct (indirect) transition of electrons and the band gaps are decreased from 4.94 to 0.06 eV on going from X = F to I. Finally, we investigate the macroscopic dielectric functions, photo-absorption coefficients, reflectivity and exciton properties, predicting that the exciton binding strength becomes weaker on going from F to I.
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spelling pubmed-102275282023-05-31 First-principles study on structural, electronic and optical properties of halide double perovskite Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I) Yu, Chol-Jun Ri, Il-Chol Ri, Hak-Myong Jang, Jong-Hyok Kim, Yun-Sim Jong, Un-Gi RSC Adv Chemistry All-inorganic halide double perovskites (HDPs) attract significant attention in the field of perovskite solar cells (PSCs) and light-emitting diodes. In this work, we present a first-principles study on structural, elastic, electronic and optical properties of all-inorganic HDPs Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I), aiming at finding the possibility of using them as photoabsorbers for PSCs. Confirming that the cubic perovskite structure can be formed safely thanks to the proper geometric factors, we find that the lattice constants are gradually increased on increasing the atomic number of the halogen atom from F to I, indicating the weakening of Ag–X and B–X interactions. Our calculations reveal that all the perovskite compounds are mechanically stable due to their elastic constants satisfying the stability criteria, whereas only the Cl-based compounds are dynamically stable in the cubic phase by observing their phonon dispersions without soft modes. The electronic band structures are calculated with the Heyd–Scuseria–Ernzerhof hybrid functional, demonstrating that the In (Sb)-based HDPs show direct (indirect) transition of electrons and the band gaps are decreased from 4.94 to 0.06 eV on going from X = F to I. Finally, we investigate the macroscopic dielectric functions, photo-absorption coefficients, reflectivity and exciton properties, predicting that the exciton binding strength becomes weaker on going from F to I. The Royal Society of Chemistry 2023-05-30 /pmc/articles/PMC10227528/ /pubmed/37260569 http://dx.doi.org/10.1039/d3ra02566g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Yu, Chol-Jun
Ri, Il-Chol
Ri, Hak-Myong
Jang, Jong-Hyok
Kim, Yun-Sim
Jong, Un-Gi
First-principles study on structural, electronic and optical properties of halide double perovskite Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I)
title First-principles study on structural, electronic and optical properties of halide double perovskite Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I)
title_full First-principles study on structural, electronic and optical properties of halide double perovskite Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I)
title_fullStr First-principles study on structural, electronic and optical properties of halide double perovskite Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I)
title_full_unstemmed First-principles study on structural, electronic and optical properties of halide double perovskite Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I)
title_short First-principles study on structural, electronic and optical properties of halide double perovskite Cs(2)AgBX(6) (B = In, Sb; X = F, Cl, Br, I)
title_sort first-principles study on structural, electronic and optical properties of halide double perovskite cs(2)agbx(6) (b = in, sb; x = f, cl, br, i)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10227528/
https://www.ncbi.nlm.nih.gov/pubmed/37260569
http://dx.doi.org/10.1039/d3ra02566g
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