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A first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary Ni–Y compounds

The intermetallic compounds between rare earth (RE) elements and transition metal elements have been comprehensively researched due to their appealing magnetic, electronic, optical and thermal properties, in which Ni–Y alloys are one kind of important system. In this work, a systematic investigation...

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Autores principales: Zhou, YunXuan, Hu, MingYu, Yan, Pei, Shi, Xiaoli, Chong, XiaoYu, Feng, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9091976/
https://www.ncbi.nlm.nih.gov/pubmed/35559302
http://dx.doi.org/10.1039/c8ra09383k
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author Zhou, YunXuan
Hu, MingYu
Yan, Pei
Shi, Xiaoli
Chong, XiaoYu
Feng, Jing
author_facet Zhou, YunXuan
Hu, MingYu
Yan, Pei
Shi, Xiaoli
Chong, XiaoYu
Feng, Jing
author_sort Zhou, YunXuan
collection PubMed
description The intermetallic compounds between rare earth (RE) elements and transition metal elements have been comprehensively researched due to their appealing magnetic, electronic, optical and thermal properties, in which Ni–Y alloys are one kind of important system. In this work, a systematic investigation concerned with structures, elastic, and thermodynamic properties of Ni(17)Y(2), Ni(5)Y, Ni(7)Y(2), Ni(3)Y, Ni(2)Y, NiY, Ni(2)Y(3) and NiY(3) in Ni–Y systems is implemented by means of first-principles calculations. NiY has the lowest formation enthalpy within −0.49 kJ per mol per atom. Ni(5)Y has the largest bulk modulus, shear modulus and Young's modulus of 181.71 GPa, 79.75 GPa and 208.70 GPa, respectively. Furthermore, the effects of different concentrations of yttrium on the mechanical and thermal properties of Ni–Y compounds are estimated by using the Voigt–Reuss method. The electronic density of states and chemical bonding between Ni and Y are key factors that determine mechanical and thermodynamic properties of these compounds. What's more, results indicate that all compounds are dynamically stable as shown by the calculated phonon dispersions.
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spelling pubmed-90919762022-05-11 A first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary Ni–Y compounds Zhou, YunXuan Hu, MingYu Yan, Pei Shi, Xiaoli Chong, XiaoYu Feng, Jing RSC Adv Chemistry The intermetallic compounds between rare earth (RE) elements and transition metal elements have been comprehensively researched due to their appealing magnetic, electronic, optical and thermal properties, in which Ni–Y alloys are one kind of important system. In this work, a systematic investigation concerned with structures, elastic, and thermodynamic properties of Ni(17)Y(2), Ni(5)Y, Ni(7)Y(2), Ni(3)Y, Ni(2)Y, NiY, Ni(2)Y(3) and NiY(3) in Ni–Y systems is implemented by means of first-principles calculations. NiY has the lowest formation enthalpy within −0.49 kJ per mol per atom. Ni(5)Y has the largest bulk modulus, shear modulus and Young's modulus of 181.71 GPa, 79.75 GPa and 208.70 GPa, respectively. Furthermore, the effects of different concentrations of yttrium on the mechanical and thermal properties of Ni–Y compounds are estimated by using the Voigt–Reuss method. The electronic density of states and chemical bonding between Ni and Y are key factors that determine mechanical and thermodynamic properties of these compounds. What's more, results indicate that all compounds are dynamically stable as shown by the calculated phonon dispersions. The Royal Society of Chemistry 2018-12-12 /pmc/articles/PMC9091976/ /pubmed/35559302 http://dx.doi.org/10.1039/c8ra09383k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhou, YunXuan
Hu, MingYu
Yan, Pei
Shi, Xiaoli
Chong, XiaoYu
Feng, Jing
A first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary Ni–Y compounds
title A first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary Ni–Y compounds
title_full A first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary Ni–Y compounds
title_fullStr A first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary Ni–Y compounds
title_full_unstemmed A first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary Ni–Y compounds
title_short A first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary Ni–Y compounds
title_sort first-principles calculation of structural, mechanical, thermodynamic and electronic properties of binary ni–y compounds
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9091976/
https://www.ncbi.nlm.nih.gov/pubmed/35559302
http://dx.doi.org/10.1039/c8ra09383k
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