Enhanced electromagnetic wave absorption of Y2Fe16Si by atomic layer deposition coating
Abstract
Surface modification of metallic magnetic powders is important to regulate high-frequency electromagnetic properties for microwave absorbing composite materials composed of these powders and insulating media. In this study, atomic layer deposition (ALD) was applied to coat metallic magnetic Y2Fe16Si powder with uniform Al2O3 layer to improve its high-frequency electromagnetic properties. The thickness of the coating layer was characterized by transmission electron microscopy and x-ray photoelectron spectroscopy methods, with an average value of approximately 50 nm. It was found that the coating layer can significantly decrease the permittivity, and hence improve the impedance matching and the microwave absorption capability of the Y2Fe16Si@Al2O3–paraffin composite. A high reflection loss of −63 dB was achieved at 9.9 GHz with a thickness of 2.2 mm, and an effective absorption bandwidth of 6.4 GHz was obtained at 1.6 mm. This study demonstrates the potential of ALD technology for optimizing the electromagnetic properties of metallic magnetic powder materials for better microwave absorption.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (12)
Tianyu Xin
Institute of Condensed Matter and Material Physics, School of Physics
Kewei Li
Institute of Condensed Matter and Material Physics, School of Physics
Shaohua Fan
School of Materials Science and Engineering of Shanxi Normal University & Key Laboratory of Magnetic Molecules and Magnetic Information Materials of Ministry of Education
Yuankang Wang
School of Integrated Circuits, Shandong University , Jinan 250101,
Pengyu Zhang
Institute of Condensed Matter and Material Physics, School of Physics
Zhou Liu
Institute of Condensed Matter and Material Physics, School of Physics
Qing Xu
Zhaochu Luo
Honglin Du
College of Chemistry and Molecular Engineering, Beijing National Laboratory for Molecular Sciences
Wenyun Yang
Institute of Condensed Matter and Material Physics, School of Physics
Changsheng Wang
Jinbo Yang
Institute of Condensed Matter and Material Physics, School of Physics