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High-Entropy Perovskites as Multifunctional Metal Oxide Semiconductors: Synthesis and Characterization of (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3)

[Image: see text] Single-phase multicomponent perovskite-type cobalt oxide containing five cations in equiatomic amounts on the A-site, namely, (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3), has been synthesized via the modified coprecipitation hydrothermal method. Using an original approach for heat t...

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Autores principales: Krawczyk, Paweł A., Jurczyszyn, Michał, Pawlak, Jakub, Salamon, Wojciech, Baran, Paweł, Kmita, Angelika, Gondek, Łukasz, Sikora, Marcin, Kapusta, Czesław, Strączek, Tomasz, Wyrwa, Jan, Żywczak, Antoni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7660934/
https://www.ncbi.nlm.nih.gov/pubmed/33196046
http://dx.doi.org/10.1021/acsaelm.0c00559
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author Krawczyk, Paweł A.
Jurczyszyn, Michał
Pawlak, Jakub
Salamon, Wojciech
Baran, Paweł
Kmita, Angelika
Gondek, Łukasz
Sikora, Marcin
Kapusta, Czesław
Strączek, Tomasz
Wyrwa, Jan
Żywczak, Antoni
author_facet Krawczyk, Paweł A.
Jurczyszyn, Michał
Pawlak, Jakub
Salamon, Wojciech
Baran, Paweł
Kmita, Angelika
Gondek, Łukasz
Sikora, Marcin
Kapusta, Czesław
Strączek, Tomasz
Wyrwa, Jan
Żywczak, Antoni
author_sort Krawczyk, Paweł A.
collection PubMed
description [Image: see text] Single-phase multicomponent perovskite-type cobalt oxide containing five cations in equiatomic amounts on the A-site, namely, (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3), has been synthesized via the modified coprecipitation hydrothermal method. Using an original approach for heat treatment, which comprises quenching utilizing liquid nitrogen as a cooling medium, a single-phase ceramic with high configuration entropy, crystallizing in an orthorhombic distorted structure was obtained. It reveals the anomalous temperature dependence of the lattice expansion with two weak transitions at approx. 80 and 240 K that are assigned to gradual crossover from the low- via intermediate- to high-spin state of Co(3+). The compound exhibits weak ferromagnetism at T ≤ 10 K and signatures of antiferromagnetic correlations in the paramagnetic phase. Ab initio calculations predict a band gap Δ = 1.18 eV in the ground-state electronic structure with the dominant contribution of O_p and Co_d orbitals in the valence and conduction bands, respectively. Electronic transport measurements confirm the negative temperature coefficient of resistivity characteristic to a semiconducting material and reveal a sudden drop in activation energy at T ∼ 240 K from E(a) ∼ 1 eV in the low-temperature phase to E(a) ∼ 0.3 eV at room temperature. The possibility of fine tuning of the semiconducting band gap via a subtle change in A-site stoichiometry is discussed.
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spelling pubmed-76609342020-11-13 High-Entropy Perovskites as Multifunctional Metal Oxide Semiconductors: Synthesis and Characterization of (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3) Krawczyk, Paweł A. Jurczyszyn, Michał Pawlak, Jakub Salamon, Wojciech Baran, Paweł Kmita, Angelika Gondek, Łukasz Sikora, Marcin Kapusta, Czesław Strączek, Tomasz Wyrwa, Jan Żywczak, Antoni ACS Appl Electron Mater [Image: see text] Single-phase multicomponent perovskite-type cobalt oxide containing five cations in equiatomic amounts on the A-site, namely, (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3), has been synthesized via the modified coprecipitation hydrothermal method. Using an original approach for heat treatment, which comprises quenching utilizing liquid nitrogen as a cooling medium, a single-phase ceramic with high configuration entropy, crystallizing in an orthorhombic distorted structure was obtained. It reveals the anomalous temperature dependence of the lattice expansion with two weak transitions at approx. 80 and 240 K that are assigned to gradual crossover from the low- via intermediate- to high-spin state of Co(3+). The compound exhibits weak ferromagnetism at T ≤ 10 K and signatures of antiferromagnetic correlations in the paramagnetic phase. Ab initio calculations predict a band gap Δ = 1.18 eV in the ground-state electronic structure with the dominant contribution of O_p and Co_d orbitals in the valence and conduction bands, respectively. Electronic transport measurements confirm the negative temperature coefficient of resistivity characteristic to a semiconducting material and reveal a sudden drop in activation energy at T ∼ 240 K from E(a) ∼ 1 eV in the low-temperature phase to E(a) ∼ 0.3 eV at room temperature. The possibility of fine tuning of the semiconducting band gap via a subtle change in A-site stoichiometry is discussed. American Chemical Society 2020-09-18 2020-10-27 /pmc/articles/PMC7660934/ /pubmed/33196046 http://dx.doi.org/10.1021/acsaelm.0c00559 Text en This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Krawczyk, Paweł A.
Jurczyszyn, Michał
Pawlak, Jakub
Salamon, Wojciech
Baran, Paweł
Kmita, Angelika
Gondek, Łukasz
Sikora, Marcin
Kapusta, Czesław
Strączek, Tomasz
Wyrwa, Jan
Żywczak, Antoni
High-Entropy Perovskites as Multifunctional Metal Oxide Semiconductors: Synthesis and Characterization of (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3)
title High-Entropy Perovskites as Multifunctional Metal Oxide Semiconductors: Synthesis and Characterization of (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3)
title_full High-Entropy Perovskites as Multifunctional Metal Oxide Semiconductors: Synthesis and Characterization of (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3)
title_fullStr High-Entropy Perovskites as Multifunctional Metal Oxide Semiconductors: Synthesis and Characterization of (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3)
title_full_unstemmed High-Entropy Perovskites as Multifunctional Metal Oxide Semiconductors: Synthesis and Characterization of (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3)
title_short High-Entropy Perovskites as Multifunctional Metal Oxide Semiconductors: Synthesis and Characterization of (Gd(0.2)Nd(0.2)La(0.2)Sm(0.2)Y(0.2))CoO(3)
title_sort high-entropy perovskites as multifunctional metal oxide semiconductors: synthesis and characterization of (gd(0.2)nd(0.2)la(0.2)sm(0.2)y(0.2))coo(3)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7660934/
https://www.ncbi.nlm.nih.gov/pubmed/33196046
http://dx.doi.org/10.1021/acsaelm.0c00559
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