Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheres

Single-phase Eu3S4 was obtained via CS2 gas sulfurization of Eu2O3 nanospheres at 773 K for longer than 0.5 h. The primary particle size of Eu3S4 became larger than that of Eu2O3 during the sulfurization process. Pure synthetic Eu3S4 powders were unstable and transformed to EuS at 873 K under vacuum...

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Main Authors: Chen Yuqi, Li Liang, Hirai Shinji
Format: Article
Language:English
Published: Sciendo 2018-12-01
Series:Materials Science-Poland
Subjects:
Online Access:https://doi.org/10.2478/msp-2018-0097
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spelling doaj-34b17908eb4146b4ad45716ab5df54d92021-09-06T19:22:35ZengSciendoMaterials Science-Poland2083-134X2018-12-0136461662210.2478/msp-2018-0097msp-2018-0097Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheresChen Yuqi0Li Liang1Hirai Shinji2School of Mechanical Engineering, Shanghai Dian Ji University, Shanghai201306, ChinaDepartment of Materials Science and Engineering, Muroran Institute of Technology, Muroran050-8585, JapanDepartment of Materials Science and Engineering, Muroran Institute of Technology, Muroran050-8585, JapanSingle-phase Eu3S4 was obtained via CS2 gas sulfurization of Eu2O3 nanospheres at 773 K for longer than 0.5 h. The primary particle size of Eu3S4 became larger than that of Eu2O3 during the sulfurization process. Pure synthetic Eu3S4 powders were unstable and transformed to EuS at 873 K under vacuum. Eu3S4 compacts were sintered in temperature range of 773 K to 1173 K and they transformed to EuS at 1473 K during spark plasma sintering. Specific heat of sintered Eu3S4 did not show an anomalous behavior in the range of 2 K to 50 K. The magnetic susceptibility of polycrystalline Eu3S4 followed a Curie-Weiss law from 2 K to 300 K. Magnetization of polycrystalline Eu3S4 was larger than that of single crystal Eu3S4 when the magnetic field was less than 3.5 kOe.https://doi.org/10.2478/msp-2018-0097eu3s4mixed-valence compoundinhomogeneous compoundcs2-gas sulfurizationspecific heatmagnetic properties
collection DOAJ
language English
format Article
sources DOAJ
author Chen Yuqi
Li Liang
Hirai Shinji
spellingShingle Chen Yuqi
Li Liang
Hirai Shinji
Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheres
Materials Science-Poland
eu3s4
mixed-valence compound
inhomogeneous compound
cs2-gas sulfurization
specific heat
magnetic properties
author_facet Chen Yuqi
Li Liang
Hirai Shinji
author_sort Chen Yuqi
title Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheres
title_short Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheres
title_full Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheres
title_fullStr Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheres
title_full_unstemmed Synthesis, sintering, specific heat and magnetism of Eu3S4 by low-temperature CS2-gas sulfurization of Eu2O3 nanospheres
title_sort synthesis, sintering, specific heat and magnetism of eu3s4 by low-temperature cs2-gas sulfurization of eu2o3 nanospheres
publisher Sciendo
series Materials Science-Poland
issn 2083-134X
publishDate 2018-12-01
description Single-phase Eu3S4 was obtained via CS2 gas sulfurization of Eu2O3 nanospheres at 773 K for longer than 0.5 h. The primary particle size of Eu3S4 became larger than that of Eu2O3 during the sulfurization process. Pure synthetic Eu3S4 powders were unstable and transformed to EuS at 873 K under vacuum. Eu3S4 compacts were sintered in temperature range of 773 K to 1173 K and they transformed to EuS at 1473 K during spark plasma sintering. Specific heat of sintered Eu3S4 did not show an anomalous behavior in the range of 2 K to 50 K. The magnetic susceptibility of polycrystalline Eu3S4 followed a Curie-Weiss law from 2 K to 300 K. Magnetization of polycrystalline Eu3S4 was larger than that of single crystal Eu3S4 when the magnetic field was less than 3.5 kOe.
topic eu3s4
mixed-valence compound
inhomogeneous compound
cs2-gas sulfurization
specific heat
magnetic properties
url https://doi.org/10.2478/msp-2018-0097
work_keys_str_mv AT chenyuqi synthesissinteringspecificheatandmagnetismofeu3s4bylowtemperaturecs2gassulfurizationofeu2o3nanospheres
AT liliang synthesissinteringspecificheatandmagnetismofeu3s4bylowtemperaturecs2gassulfurizationofeu2o3nanospheres
AT hiraishinji synthesissinteringspecificheatandmagnetismofeu3s4bylowtemperaturecs2gassulfurizationofeu2o3nanospheres
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