FeCo Nanowire-Strontium Ferrite Powder Composites for Permanent Magnets with High-Energy Products
J. C. Guzm\'an-M\'inguez, S. Ruiz-G\'omez, L. M. Vicente-Arche, C., Granados-Miralles, C. Fern\'andez-Gonz\'alez, F. Mompe\'an, M., Garc\'ia-Hern\'andez, S. Erohkin, D. Berkov, D. Mishra, C. de Juli\'an, Fern\'andez, J. F. Fern\'andez, L. P\'erez, and A. Quesada

TL;DR
This study develops a composite magnet using FeCo nanowires and strontium ferrite particles, achieving higher energy products and remanence, offering a promising rare-earth-free alternative for permanent magnets.
Contribution
The paper introduces a novel FeCo nanowire and ferrite composite that enhances magnetic properties compared to pure ferrite magnets.
Findings
20% increase in remanence over pure strontium ferrite
48% enhancement in energy product
Nanowire passivation improves oxidation resistance
Abstract
Due to the issues associated with rare-earth elements, there arises a strong need for magnets with properties between those of ferrites and rare-earth magnets that could substitute the latter in selected applications. Here, we produce a high remanent magnetization composite bonded magnet by mixing FeCo nanowire powders with hexaferrite particles. In the first step, metallic nanowires with diameters between 30 and 100 nm and length of at least 2 {\mu}m are fabricated by electrodeposition. The oriented as-synthesized nanowires show remanence ratios above 0.76 and coercivities above 199 kA/m and resist core oxidation up to 300 {\deg}C due to the existence of a > 8 nm thin oxide passivating shell. In the second step, a composite powder is fabricated by mixing the nanowires with hexaferrite particles. After the optimal nanowire diameter and composite composition are selected, a bonded magnet…
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