High-frequency FeSiAl-based soft magnetic composites via simultaneously suppressed eddy and hysteresis losses

H Hongxia Li (School of Biological Sciences) Y Yixing Li R Rongzhi Zhao S Sateesh Bandaru Z Zhenhua Zhang H Hong Pan J Jintao Lin Z Zhaoyuan Liu X Xiaolian Liu C Chenglong Hu P Pengfei Guan A Anjian Pan E Erpan Zhang Z Zhong Li (State Key Laboratory of Clean and Efficient Coal Utilization, College of Chemistry and Chemical Engineering) H Huawei Rong X Xuefeng Zhang

Abstract

Abstract Soft magnetic composites present promising solutions for integrated transformers and inductors, but challenges arise at MHz range, where hysteresis and intra-eddy losses result in substantial performance degradation. In this study, we propose a bulk/interface insulation strategy to synthesize FeSiAl:Sn/Al 2 O 3 soft magnetic composite by mutual diffusion of metal atoms, where a ~ 3 um-depth Sn-substituted FeSiAl is obtained in the matrix and an insulating Al 2 O 3 layer is epitaxially grown on FeSiAl surface. The formation of FeSiAl:Sn can not only suppress intra-eddy loss by enhancing electrical resistivity, but also reduce coercivity by mitigating lattice distortion for reducing hysteresis loss. Meanwhile, the in-situ grown Al 2 O 3 layer can reduce inter-eddy loss by electrical isolation between FeSiAl particles. This construction leads to power loss of 47 mW/cm 3 at 100 kHz and 1344 mW/cm 3 at 1 MHz under 50 mT, as well as effective permeability of 60 up to tens of MHz, associated with cut-off frequency of 250.7 MHz. This approach lays the groundwork for the development of high-frequency soft magnetic composites in engineering applications.

Article Details

Volume / Issue Vol. 16, Issue 1
Published October 29, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

H

Hongxia Li

School of Biological Sciences

Y

Yixing Li

R

Rongzhi Zhao

S

Sateesh Bandaru

Z

Zhenhua Zhang

H

Hong Pan

J

Jintao Lin

Z

Zhaoyuan Liu

X

Xiaolian Liu

C

Chenglong Hu

P

Pengfei Guan

A

Anjian Pan

E

Erpan Zhang

Z

Zhong Li

State Key Laboratory of Clean and Efficient Coal Utilization, College of Chemistry and Chemical Engineering

H

Huawei Rong

X

Xuefeng Zhang