Multiferroic Properties of Electrospun CFO-BCTSn Nanocomposites for Magnetoelectric and Magnetic Field Sensing Applications

Fuente: arXiv
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Main Authors: Hadouch, Youness, Abdallah, Nayad, Mezzane, Daoud, Amjoud, Mbarek, Dolocan, Voicu, Hoummada, Khalid, Novak, Nikola, Razumnaya, Anna, Rozic, Brigita, Fisinger, Val, Ursic, Hana, Laguta, Valentin, Kutnjak, Zdravko, Marssi, Mimoun El
Format: Preprint
Published: 2026
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author Hadouch, Youness
Abdallah, Nayad
Mezzane, Daoud
Amjoud, Mbarek
Dolocan, Voicu
Hoummada, Khalid
Novak, Nikola
Razumnaya, Anna
Rozic, Brigita
Fisinger, Val
Ursic, Hana
Laguta, Valentin
Kutnjak, Zdravko
Marssi, Mimoun El
author_facet Hadouch, Youness
Abdallah, Nayad
Mezzane, Daoud
Amjoud, Mbarek
Dolocan, Voicu
Hoummada, Khalid
Novak, Nikola
Razumnaya, Anna
Rozic, Brigita
Fisinger, Val
Ursic, Hana
Laguta, Valentin
Kutnjak, Zdravko
Marssi, Mimoun El
contents Multiferroic CFO-BCTSn composite nanofibers were synthesized using a sol-gel electrospinning method. Electron microscopy revealed well-defined fibers with diameters of 120-150 nm. Structural analyses using X-ray diffraction, Raman spectroscopy, and high-resolution transmission electron microscopy confirmed the coexistence of the spinel CFO phase and the perovskite BCTSn phase without detectable secondary phases. Magnetic hysteresis measurements demonstrated the magnetic behavior of the nanofibers, while piezoresponse force microscopy confirmed their piezoelectric properties. Magnetoelectric coupling was evidenced by differences between the magnetic hysteresis loops of electrically poled and unpoled samples. These lead-free composite nanofibers show potential for nanoscale magnetoelectric devices and magnetic field sensing applications.
format Preprint
id arxiv_https___arxiv_org_abs_2605_20986
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Multiferroic Properties of Electrospun CFO-BCTSn Nanocomposites for Magnetoelectric and Magnetic Field Sensing Applications
Hadouch, Youness
Abdallah, Nayad
Mezzane, Daoud
Amjoud, Mbarek
Dolocan, Voicu
Hoummada, Khalid
Novak, Nikola
Razumnaya, Anna
Rozic, Brigita
Fisinger, Val
Ursic, Hana
Laguta, Valentin
Kutnjak, Zdravko
Marssi, Mimoun El
Materials Science
Multiferroic CFO-BCTSn composite nanofibers were synthesized using a sol-gel electrospinning method. Electron microscopy revealed well-defined fibers with diameters of 120-150 nm. Structural analyses using X-ray diffraction, Raman spectroscopy, and high-resolution transmission electron microscopy confirmed the coexistence of the spinel CFO phase and the perovskite BCTSn phase without detectable secondary phases. Magnetic hysteresis measurements demonstrated the magnetic behavior of the nanofibers, while piezoresponse force microscopy confirmed their piezoelectric properties. Magnetoelectric coupling was evidenced by differences between the magnetic hysteresis loops of electrically poled and unpoled samples. These lead-free composite nanofibers show potential for nanoscale magnetoelectric devices and magnetic field sensing applications.
title Multiferroic Properties of Electrospun CFO-BCTSn Nanocomposites for Magnetoelectric and Magnetic Field Sensing Applications
topic Materials Science
url https://arxiv.org/abs/2605.20986