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Structure and Superconductivity of Tin-Containing HfTiZrSnM (M = Cu, Fe, Nb, Ni) Medium-Entropy and High-Entropy Alloys

In an attempt to incorporate tin (Sn) into high-entropy alloys composed of refractory metals Hf, Nb, Ti and Zr with the addition of 3d transition metals Cu, Fe, and Ni, we synthesized a series of alloys in the system HfTiZrSnM (M = Cu, Fe, Nb, Ni). The alloys were characterized crystallographically,...

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Autores principales: Gačnik, Darja, Jelen, Andreja, Krnel, Mitja, Vrtnik, Stanislav, Luzar, Jože, Koželj, Primož, van Midden, Marion, Zupanič, Erik, Wencka, Magdalena, Meden, Anton, Hu, Qiang, Guo, Sheng, Dolinšek, Janez
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8305006/
https://www.ncbi.nlm.nih.gov/pubmed/34300872
http://dx.doi.org/10.3390/ma14143953
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author Gačnik, Darja
Jelen, Andreja
Krnel, Mitja
Vrtnik, Stanislav
Luzar, Jože
Koželj, Primož
van Midden, Marion
Zupanič, Erik
Wencka, Magdalena
Meden, Anton
Hu, Qiang
Guo, Sheng
Dolinšek, Janez
author_facet Gačnik, Darja
Jelen, Andreja
Krnel, Mitja
Vrtnik, Stanislav
Luzar, Jože
Koželj, Primož
van Midden, Marion
Zupanič, Erik
Wencka, Magdalena
Meden, Anton
Hu, Qiang
Guo, Sheng
Dolinšek, Janez
author_sort Gačnik, Darja
collection PubMed
description In an attempt to incorporate tin (Sn) into high-entropy alloys composed of refractory metals Hf, Nb, Ti and Zr with the addition of 3d transition metals Cu, Fe, and Ni, we synthesized a series of alloys in the system HfTiZrSnM (M = Cu, Fe, Nb, Ni). The alloys were characterized crystallographically, microstructurally, and compositionally, and their physical properties were determined, with the emphasis on superconductivity. All Sn-containing alloys are multi-phase mixtures of intermetallic compounds (in most cases four). A common feature of the alloys is a microstructure of large crystalline grains of a hexagonal (Hf, Ti, Zr)(5)Sn(3) partially ordered phase embedded in a matrix that also contains many small inclusions. In the HfTiZrSnCu alloy, some Cu is also incorporated into the grains. Based on the electrical resistivity, specific heat, and magnetization measurements, a superconducting (SC) state was observed in the HfTiZr, HfTiZrSn, HfTiZrSnNi, and HfTiZrSnNb alloys. The HfTiZrSnFe alloy shows a partial SC transition, whereas the HfTiZrSnCu alloy is non-superconducting. All SC alloys are type II superconductors and belong to the Anderson class of “dirty” superconductors.
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spelling pubmed-83050062021-07-25 Structure and Superconductivity of Tin-Containing HfTiZrSnM (M = Cu, Fe, Nb, Ni) Medium-Entropy and High-Entropy Alloys Gačnik, Darja Jelen, Andreja Krnel, Mitja Vrtnik, Stanislav Luzar, Jože Koželj, Primož van Midden, Marion Zupanič, Erik Wencka, Magdalena Meden, Anton Hu, Qiang Guo, Sheng Dolinšek, Janez Materials (Basel) Article In an attempt to incorporate tin (Sn) into high-entropy alloys composed of refractory metals Hf, Nb, Ti and Zr with the addition of 3d transition metals Cu, Fe, and Ni, we synthesized a series of alloys in the system HfTiZrSnM (M = Cu, Fe, Nb, Ni). The alloys were characterized crystallographically, microstructurally, and compositionally, and their physical properties were determined, with the emphasis on superconductivity. All Sn-containing alloys are multi-phase mixtures of intermetallic compounds (in most cases four). A common feature of the alloys is a microstructure of large crystalline grains of a hexagonal (Hf, Ti, Zr)(5)Sn(3) partially ordered phase embedded in a matrix that also contains many small inclusions. In the HfTiZrSnCu alloy, some Cu is also incorporated into the grains. Based on the electrical resistivity, specific heat, and magnetization measurements, a superconducting (SC) state was observed in the HfTiZr, HfTiZrSn, HfTiZrSnNi, and HfTiZrSnNb alloys. The HfTiZrSnFe alloy shows a partial SC transition, whereas the HfTiZrSnCu alloy is non-superconducting. All SC alloys are type II superconductors and belong to the Anderson class of “dirty” superconductors. MDPI 2021-07-15 /pmc/articles/PMC8305006/ /pubmed/34300872 http://dx.doi.org/10.3390/ma14143953 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
Gačnik, Darja
Jelen, Andreja
Krnel, Mitja
Vrtnik, Stanislav
Luzar, Jože
Koželj, Primož
van Midden, Marion
Zupanič, Erik
Wencka, Magdalena
Meden, Anton
Hu, Qiang
Guo, Sheng
Dolinšek, Janez
Structure and Superconductivity of Tin-Containing HfTiZrSnM (M = Cu, Fe, Nb, Ni) Medium-Entropy and High-Entropy Alloys
title Structure and Superconductivity of Tin-Containing HfTiZrSnM (M = Cu, Fe, Nb, Ni) Medium-Entropy and High-Entropy Alloys
title_full Structure and Superconductivity of Tin-Containing HfTiZrSnM (M = Cu, Fe, Nb, Ni) Medium-Entropy and High-Entropy Alloys
title_fullStr Structure and Superconductivity of Tin-Containing HfTiZrSnM (M = Cu, Fe, Nb, Ni) Medium-Entropy and High-Entropy Alloys
title_full_unstemmed Structure and Superconductivity of Tin-Containing HfTiZrSnM (M = Cu, Fe, Nb, Ni) Medium-Entropy and High-Entropy Alloys
title_short Structure and Superconductivity of Tin-Containing HfTiZrSnM (M = Cu, Fe, Nb, Ni) Medium-Entropy and High-Entropy Alloys
title_sort structure and superconductivity of tin-containing hftizrsnm (m = cu, fe, nb, ni) medium-entropy and high-entropy alloys
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8305006/
https://www.ncbi.nlm.nih.gov/pubmed/34300872
http://dx.doi.org/10.3390/ma14143953
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