MXene/FeSiAl Composite Foam with Absorption-Dominant EMI Shielding via High Permeability of FeSiAl

Abstract The rapid development of high-frequency electronic devices urgently requires electromagnetic interference (EMI) shielding materials with both high shielding effectiveness (SE) and low reflectivity. However, achieving simultaneous high shielding and low reflectivity remains a significant challenge due to the inherent impedance mismatch. Herein, an asymmetric MXene/Flaky FeSiAl (FFSA)/expandable polymer microsphere (EPM) composite foam integrating metal soft magnetic material was constructed. Due to the particularly high permeability and low loss of FFSA, it can serve as an impedance-matching layer, allowing electromagnetic waves to enter the material with minimal surface reflection. Consequently, the composite foam delivers an EMI SE of 34.6 dB and a reflection coefficient as low as 0.03, maintaining broadband shielding above 31.9 dB across 5–27 GHz. Furthermore, the foam exhibits a near-field SE of approximately –40 dB in the 1–6 GHz band and effectively blocks wireless power transmission. This study provides a feasible strategy for developing low-reflection EMI shielding materials.

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Publication Details

Journal
ACS Applied Electronic Materials
Published
2026-10-05
DOI
https://doi.org/10.1021/acsaelm.6c01044
Primary Topic
Electromagnetic wave absorption materials
Type
article
Field-Weighted Citation Impact
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article

MXene/FeSiAl Composite Foam with Absorption-Dominant EMI Shielding via High Permeability of FeSiAl

Kexin Fu, Yan‐Jun Wan, Si‐Yuan Liao, Haofeng Ouyang et al.
ACS Applied Electronic Materials
Electromagnetic wave absorption materials
article

MXene/FeSiAl Composite Foam with Absorption-Dominant EMI Shielding via High Permeability of FeSiAl

Kexin Fu, Yan‐Jun Wan, Si‐Yuan Liao, Haofeng Ouyang, Ping Zhu, Yujun Wu, Kuan Deng, Yile Ye, Zeyu Zheng
article en

Abstract

Abstract The rapid development of high-frequency electronic devices urgently requires electromagnetic interference (EMI) shielding materials with both high shielding effectiveness (SE) and low reflectivity. However, achieving simultaneous high shielding and low reflectivity remains a significant challenge due to the inherent impedance mismatch. Herein, an asymmetric MXene/Flaky FeSiAl (FFSA)/expandable polymer microsphere (EPM) composite foam integrating metal soft magnetic material was constructed. Due to the particularly high permeability and low loss of FFSA, it can serve as an impedance-matching layer, allowing electromagnetic waves to enter the material with minimal surface reflection. Consequently, the composite foam delivers an EMI SE of 34.6 dB and a reflection coefficient as low as 0.03, maintaining broadband shielding above 31.9 dB across 5–27 GHz. Furthermore, the foam exhibits a near-field SE of approximately –40 dB in the 1–6 GHz band and effectively blocks wireless power transmission. This study provides a feasible strategy for developing low-reflection EMI shielding materials.

ACS Applied Electronic Materials
Nanchang Institute of Science & Technology (CN), Shenzhen Institutes of Advanced Technology (CN)
Openalex Percentile: Top 31%
Electromagnetic wave absorption materials
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MXene/FeSiAl Composite Foam with Absorption-Dominant EMI Shielding via High Permeability of FeSiAl — Kexin Fu, Yan‐Jun Wan, et al. · ACS Applied Electronic Materials (2026) | TGRS Research Map | TGRS