Structural and magnetic properties of the MnFeSi^sub x^P^sub 1-x^ magnetocaloric phases

The MnFeSixP1-x phases (x = 0.30, 0.35, 0.40, 0.48, 0.52, 0.54, 0.56) have been synthesized by arc-melting and subsequent high-temperature sintering. For the first time, single crystals of x = 0.30, 0.40 were successfully grown and analyzed by single crystal X-ray diffraction. Variable temperature X...

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Published inIntermetallics Vol. 105; p. 56
Main Authors He, Allan, Mozharivskyj, Yurij
Format Journal Article
LanguageEnglish
Published Barking Elsevier BV 01.02.2019
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Abstract The MnFeSixP1-x phases (x = 0.30, 0.35, 0.40, 0.48, 0.52, 0.54, 0.56) have been synthesized by arc-melting and subsequent high-temperature sintering. For the first time, single crystals of x = 0.30, 0.40 were successfully grown and analyzed by single crystal X-ray diffraction. Variable temperature X-ray diffraction experiments for x = 0.30 were completed and they show structural changes across the phase transition. Magnetization data revealed that the Curie temperatures and thermal hysteresis values can be tuned according to the Si:P ratio.
AbstractList The MnFeSixP1-x phases (x = 0.30, 0.35, 0.40, 0.48, 0.52, 0.54, 0.56) have been synthesized by arc-melting and subsequent high-temperature sintering. For the first time, single crystals of x = 0.30, 0.40 were successfully grown and analyzed by single crystal X-ray diffraction. Variable temperature X-ray diffraction experiments for x = 0.30 were completed and they show structural changes across the phase transition. Magnetization data revealed that the Curie temperatures and thermal hysteresis values can be tuned according to the Si:P ratio.
Author He, Allan
Mozharivskyj, Yurij
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Snippet The MnFeSixP1-x phases (x = 0.30, 0.35, 0.40, 0.48, 0.52, 0.54, 0.56) have been synthesized by arc-melting and subsequent high-temperature sintering. For the...
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SubjectTerms Crystals
Electric arc melting
High temperature
Magnetic properties
Magnetism
Phase transitions
Single crystals
X-ray diffraction
Title Structural and magnetic properties of the MnFeSi^sub x^P^sub 1-x^ magnetocaloric phases
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