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Mechanosynthesis and Thermoelectric Properties of Fe, Zn, and Cd-Doped P-Type Tetrahedrite: Cu(12-x)M(x)Sb(4)S(13)

This contribution deals with the mechanochemical synthesis, characterization, and thermoelectric properties of tetrahedrite-based materials, Cu(12-x)M(x)Sb(4)S(13) (M = Fe(2+), Zn(2+), Cd(2+); x = 0, 1.5, 2). High-energy mechanical milling allows obtaining pristine and substituted tetrahedrites, aft...

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Autores principales: López Cota, Francisco Arturo, Díaz-Guillén, José Alonso, Juan Dura, Oscar, López de la Torre, Marco Antonio, Rodríguez-Hernández, Joelis, Fernández Fuentes, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8273704/
https://www.ncbi.nlm.nih.gov/pubmed/34206233
http://dx.doi.org/10.3390/ma14133448
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author López Cota, Francisco Arturo
Díaz-Guillén, José Alonso
Juan Dura, Oscar
López de la Torre, Marco Antonio
Rodríguez-Hernández, Joelis
Fernández Fuentes, Antonio
author_facet López Cota, Francisco Arturo
Díaz-Guillén, José Alonso
Juan Dura, Oscar
López de la Torre, Marco Antonio
Rodríguez-Hernández, Joelis
Fernández Fuentes, Antonio
author_sort López Cota, Francisco Arturo
collection PubMed
description This contribution deals with the mechanochemical synthesis, characterization, and thermoelectric properties of tetrahedrite-based materials, Cu(12-x)M(x)Sb(4)S(13) (M = Fe(2+), Zn(2+), Cd(2+); x = 0, 1.5, 2). High-energy mechanical milling allows obtaining pristine and substituted tetrahedrites, after short milling under ambient conditions, of stoichiometric mixtures of the corresponding commercially available binary sulfides, i.e., Cu(2)S, CuS, Sb(2)S(3), and MS (M = Fe(2+), Zn(2+), Cd(2+)). All the target materials but those containing Cd were obtained as single-phase products; some admixture of a hydrated cadmium sulfate was also identified by XRD as a by-product when synthesizing Cu(10)Cd(2)Sb(4)S(13). The as-obtained products were thermally stable when firing in argon up to a temperature of 350–400 °C. Overall, the substitution of Cu(II) by Fe(II), Zn(II), or Cd(II) reduces tetrahedrites’ thermal and electrical conductivities but increases the Seebeck coefficient. Unfortunately, the values of the thermoelectric figure of merit obtained in this study are in general lower than those found in the literature for similar samples obtained by other powder processing methods; slight compositional changes, undetected secondary phases, and/or deficient sintering might account for some of these discrepancies.
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spelling pubmed-82737042021-07-13 Mechanosynthesis and Thermoelectric Properties of Fe, Zn, and Cd-Doped P-Type Tetrahedrite: Cu(12-x)M(x)Sb(4)S(13) López Cota, Francisco Arturo Díaz-Guillén, José Alonso Juan Dura, Oscar López de la Torre, Marco Antonio Rodríguez-Hernández, Joelis Fernández Fuentes, Antonio Materials (Basel) Article This contribution deals with the mechanochemical synthesis, characterization, and thermoelectric properties of tetrahedrite-based materials, Cu(12-x)M(x)Sb(4)S(13) (M = Fe(2+), Zn(2+), Cd(2+); x = 0, 1.5, 2). High-energy mechanical milling allows obtaining pristine and substituted tetrahedrites, after short milling under ambient conditions, of stoichiometric mixtures of the corresponding commercially available binary sulfides, i.e., Cu(2)S, CuS, Sb(2)S(3), and MS (M = Fe(2+), Zn(2+), Cd(2+)). All the target materials but those containing Cd were obtained as single-phase products; some admixture of a hydrated cadmium sulfate was also identified by XRD as a by-product when synthesizing Cu(10)Cd(2)Sb(4)S(13). The as-obtained products were thermally stable when firing in argon up to a temperature of 350–400 °C. Overall, the substitution of Cu(II) by Fe(II), Zn(II), or Cd(II) reduces tetrahedrites’ thermal and electrical conductivities but increases the Seebeck coefficient. Unfortunately, the values of the thermoelectric figure of merit obtained in this study are in general lower than those found in the literature for similar samples obtained by other powder processing methods; slight compositional changes, undetected secondary phases, and/or deficient sintering might account for some of these discrepancies. MDPI 2021-06-22 /pmc/articles/PMC8273704/ /pubmed/34206233 http://dx.doi.org/10.3390/ma14133448 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
López Cota, Francisco Arturo
Díaz-Guillén, José Alonso
Juan Dura, Oscar
López de la Torre, Marco Antonio
Rodríguez-Hernández, Joelis
Fernández Fuentes, Antonio
Mechanosynthesis and Thermoelectric Properties of Fe, Zn, and Cd-Doped P-Type Tetrahedrite: Cu(12-x)M(x)Sb(4)S(13)
title Mechanosynthesis and Thermoelectric Properties of Fe, Zn, and Cd-Doped P-Type Tetrahedrite: Cu(12-x)M(x)Sb(4)S(13)
title_full Mechanosynthesis and Thermoelectric Properties of Fe, Zn, and Cd-Doped P-Type Tetrahedrite: Cu(12-x)M(x)Sb(4)S(13)
title_fullStr Mechanosynthesis and Thermoelectric Properties of Fe, Zn, and Cd-Doped P-Type Tetrahedrite: Cu(12-x)M(x)Sb(4)S(13)
title_full_unstemmed Mechanosynthesis and Thermoelectric Properties of Fe, Zn, and Cd-Doped P-Type Tetrahedrite: Cu(12-x)M(x)Sb(4)S(13)
title_short Mechanosynthesis and Thermoelectric Properties of Fe, Zn, and Cd-Doped P-Type Tetrahedrite: Cu(12-x)M(x)Sb(4)S(13)
title_sort mechanosynthesis and thermoelectric properties of fe, zn, and cd-doped p-type tetrahedrite: cu(12-x)m(x)sb(4)s(13)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8273704/
https://www.ncbi.nlm.nih.gov/pubmed/34206233
http://dx.doi.org/10.3390/ma14133448
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