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Study of Entropy Production of Magnetoelectric Multiferroic Materials
by
Ruiz, María Sol
, Razzitte, Adrián
in
Barium titanates
/ Composite materials
/ Electric fields
/ Energy dissipation
/ Entropy
/ Ferroelectric materials
/ Ferroelectricity
/ Frequency ranges
/ Morphology
/ Multiferroic materials
/ Permeability
/ Scanning electron microscopy
/ Sintering
2024
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Study of Entropy Production of Magnetoelectric Multiferroic Materials
by
Ruiz, María Sol
, Razzitte, Adrián
in
Barium titanates
/ Composite materials
/ Electric fields
/ Energy dissipation
/ Entropy
/ Ferroelectric materials
/ Ferroelectricity
/ Frequency ranges
/ Morphology
/ Multiferroic materials
/ Permeability
/ Scanning electron microscopy
/ Sintering
2024
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Do you wish to request the book?
Study of Entropy Production of Magnetoelectric Multiferroic Materials
by
Ruiz, María Sol
, Razzitte, Adrián
in
Barium titanates
/ Composite materials
/ Electric fields
/ Energy dissipation
/ Entropy
/ Ferroelectric materials
/ Ferroelectricity
/ Frequency ranges
/ Morphology
/ Multiferroic materials
/ Permeability
/ Scanning electron microscopy
/ Sintering
2024
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Study of Entropy Production of Magnetoelectric Multiferroic Materials
Journal Article
Study of Entropy Production of Magnetoelectric Multiferroic Materials
2024
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Overview
Composite multiferroic materials were prepared using the conventional ceramic double sintering process, with composition of Ґ BaTiO3/(1 − Ґ) Cu0.3Ni0.1Zn0.6Fe2O4, where Ґ represents the mass fraction of the ferroelectric phase ranging from 0.3 to 0.9. The behavior of the bulk composites under external dynamic magnetic and electric fields was studied as a function of the ferroelectric phase content. The objective of this work is to establish a relationship between the irreversibility process and magnetic and electrical losses in composite magnetoelectric materials. Experimental measurements were correlated with the entropy production of materials. The results allow us to infer that in the explored frequency range (from 1 MHz to 1.8 GHz), entropy production not only decreases as the ferroelectric phase content increases but is also related to the magnetic losses.
Publisher
Springer Nature B.V
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