材料科学
气凝胶
电磁屏蔽
光电子学
阻抗匹配
电磁干扰
电磁干扰
保温
多孔性
微波食品加热
三元运算
复合数
电磁辐射
极化(电化学)
光子学
热电效应
电阻抗
不透明度
复合材料
纳米颗粒
介电常数
堆栈(抽象数据类型)
异质结
MXenes公司
散射
红外线的
多光谱图像
热的
光学
发射率
热导率
多孔介质
纳米技术
电磁环境
护盾
纳米材料
电磁学
作者
Saifei Du,Lei Ding,Shuqi Li,Kun Wang,Baojiang Liu,W B Wang,Dan Yu,Chunyan Hu
标识
DOI:10.1021/acsanm.6c01926
摘要
MXene-based aerogels are promising for electromagnetic interference (EMI) shielding due to their lightweight nature and high conductivity. However, their practical application is often hindered by severe impedance mismatch and excessive secondary reflection. To overcome this limitation, we developed a multifunctional ternary composite aerogel (MTCA) via a synergistic self-assembly strategy. In this architecture, TpPa-1 covalent organic framework (COF) was grown in situ and integrated with MXene nanosheets within a chitosan matrix. The resulting hierarchical porous structure significantly optimizes impedance matching. Consequently, the optimized MTCA achieves an EMI shielding efficiency of 39.93 dB in the X-band, operating via an absorption-dominated mechanism. This performance stems from enhanced interfacial polarization at the MXene/COF heterojunctions and prolonged microwave propagation paths facilitated by multiple scattering within the porous network. Furthermore, the aerogel exhibits multispectral stealth capabilities: it demonstrates low infrared emissivity (ε = 0.50), superior thermal insulation (surface temperature of 28.7 °C under an 80 °C heat source), and effective visual camouflage adaptable to environmental backgrounds. This work presents a robust strategy for designing advanced stealth materials that integrate efficient absorption-dominant EMI shielding with multispectral compatibility.
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