材料科学
气凝胶
反射损耗
制作
阻抗匹配
光电子学
宽带
吸收(声学)
多孔性
电介质
热导率
碳纳米管
电磁辐射
热的
各向异性
带宽(计算)
复合数
微波食品加热
纳米尺度
纳米技术
复合材料
MXenes公司
联轴节(管道)
介电损耗
保温
红外线的
反射(计算机编程)
可见光谱
多孔介质
作者
Weihao Xu,Zixuan Wang,Menglong Xu,Runlin Chen,Yurou Guo,Jun Wang
出处
期刊:Small
[Wiley]
日期:2026-08-11
卷期号:: e75153-e75153
摘要
ABSTRACT Rationally coupling nanoscale material design with macroscopic architecture is crucial for achieving lightweight absorbers with broadband and strong electromagnetic (EM) wave attenuation. Herein, multiscale‐engineered polyimide (PI)/MXene/Ni aerogels integrating magnetic Ni nanochains, dielectric MXene sheets, and anisotropic porous architectures are reported. Ni nanochains with controlled morphology were synthesized via NaOH‐assisted hydrazine reduction, while directional freezing enabled the fabrication of random, parallel, and normal aerogel architectures. The normal‐aligned PI/MXene/Ni aerogel exhibits a remarkable minimum reflection loss (RL min ) of −72.42 dB at 2.8 mm. Guided by a genetic‐algorithm optimization, tri‐layer assemblies further expand the effective absorption bandwidth (EAB) to 8.4 GHz while maintaining an outstanding RL min of −61.69 dB. The superior absorption originates from synergistic dielectric–magnetic–structural losses, including interfacial polarization, ohmic/eddy‐current dissipation, and gradient impedance matching enabled by the layered porous framework. Beyond EM attenuation, the aerogels feature ultralow density, high compressive strength, enhanced hydrophobicity, intrinsic flame retardancy, and low thermal conductivity, providing effective infrared stealth and thermal protection. This work demonstrates a multiscale design strategy to create multifunctional, broadband EM absorbers for demanding electronic and aerospace environments.
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