Effects of Sm doping on EuB6

A solid-state reaction was used to investigate the nanocrystalline particles of Sm-doped EuB6 and their optical, thermionic emission and mechanical properties were investigated. The tapered nanoawls had a length of 3–12 μm and a diameter ranging from 40 to 200 nm at the roots and 20–100 nm at the t...

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Main Author: Ч. Бозада
Format: Article
Language:English
Published: Academician Ye.A. Buketov Karaganda University 2023-09-01
Series:Қарағанды университетінің хабаршысы. Физика сериясы
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Online Access:https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/528
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author Ч. Бозада
author_facet Ч. Бозада
author_sort Ч. Бозада
collection DOAJ
description A solid-state reaction was used to investigate the nanocrystalline particles of Sm-doped EuB6 and their optical, thermionic emission and mechanical properties were investigated. The tapered nanoawls had a length of 3–12 μm and a diameter ranging from 40 to 200 nm at the roots and 20–100 nm at the tip as shown by in scanning electron microscopy (SEM). As the temperature of the material increases, the thermionic emission current density also increases. Jo as the zero-field current densities for Eu0.6Sm0.4B6 at 1500 K, 1673 K, 1773 K, 1873 K were 0.72 A cm-2, 4.25 A cm-2, 10.06 A cm-2 and 20.05 A cm-2. By increasing the Sm doping content, electrical density of Eu1-xSmxB6 decreases. In all materials, the electrical resistivities increased linearly with temperature from 200 to 1200 °C, indicating metallic conductivity. Eu0.6Sm0.4B6 has a lower Vickers hardness and higher flexural strength than EuB6.
format Article
id doaj-art-2ee341e12f0c4904a13ec9d3d8fab9ca
institution OA Journals
issn 2518-7198
2663-5089
language English
publishDate 2023-09-01
publisher Academician Ye.A. Buketov Karaganda University
record_format Article
series Қарағанды университетінің хабаршысы. Физика сериясы
spelling doaj-art-2ee341e12f0c4904a13ec9d3d8fab9ca2025-08-20T02:11:38ZengAcademician Ye.A. Buketov Karaganda UniversityҚарағанды университетінің хабаршысы. Физика сериясы2518-71982663-50892023-09-01111310.31489/2023ph3/86-90Effects of Sm doping on EuB6Ч. Бозада A solid-state reaction was used to investigate the nanocrystalline particles of Sm-doped EuB6 and their optical, thermionic emission and mechanical properties were investigated. The tapered nanoawls had a length of 3–12 μm and a diameter ranging from 40 to 200 nm at the roots and 20–100 nm at the tip as shown by in scanning electron microscopy (SEM). As the temperature of the material increases, the thermionic emission current density also increases. Jo as the zero-field current densities for Eu0.6Sm0.4B6 at 1500 K, 1673 K, 1773 K, 1873 K were 0.72 A cm-2, 4.25 A cm-2, 10.06 A cm-2 and 20.05 A cm-2. By increasing the Sm doping content, electrical density of Eu1-xSmxB6 decreases. In all materials, the electrical resistivities increased linearly with temperature from 200 to 1200 °C, indicating metallic conductivity. Eu0.6Sm0.4B6 has a lower Vickers hardness and higher flexural strength than EuB6. https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/528nanocrystallinemechanical propertiesdielectric functionthermionic emissionelectrical resistivity
spellingShingle Ч. Бозада
Effects of Sm doping on EuB6
Қарағанды университетінің хабаршысы. Физика сериясы
nanocrystalline
mechanical properties
dielectric function
thermionic emission
electrical resistivity
title Effects of Sm doping on EuB6
title_full Effects of Sm doping on EuB6
title_fullStr Effects of Sm doping on EuB6
title_full_unstemmed Effects of Sm doping on EuB6
title_short Effects of Sm doping on EuB6
title_sort effects of sm doping on eub6
topic nanocrystalline
mechanical properties
dielectric function
thermionic emission
electrical resistivity
url https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/528
work_keys_str_mv AT čbozada effectsofsmdopingoneub6