微波食品加热
材料科学
碳纤维
吸收(声学)
环境友好型
气凝胶
生物量(生态学)
双金属片
电介质
碳纳米管
化学工程
热的
磁性
纳米颗粒
电磁学
富勒烯
衰减
消散
纳米技术
衰减系数
合金
介电损耗
磁性纳米粒子
光电子学
耗散因子
磁场
电磁辐射
石墨烯
反射损耗
电子设备和系统的热管理
金属
复合材料
作者
Yu L. Lei,Qinchuan He,Yiqun Wang,Cong-Min Fan,Xuemin Yin,Changcong Wang,Lanxiang Liu
标识
DOI:10.1021/acssuschemeng.5c07718
摘要
The synergistic coupling mechanism between magnetic and dielectric losses is widely recognized as a key design strategy for realizing efficient microwave attenuation composites. In this work, a carbon-based magnetic aerogel was successfully prepared using eggplant as a carbon source, realizing the interaction between magnetism and dielectric dissipation and developing a low-cost and environmentally friendly multifunctional material. The electromagnetic microwave absorption (EMA) characteristics were precisely tuned by varying the metal ion concentration ratio. Notably, the bimetallic ion-doped carbon aerogel has excellent EMA properties, with an EABmax of 6.32 GHz and RLmin value of −65.8 dB, under the condition of Fe3+ and Co2+ in a 1:2 molar proportion. This excellent performance is attributed to its unique three-dimensional (3D) carbon skeleton, in which the alloy nanoparticles are embedded in the hole-and-sheet structure and decorated on carbon, attaining optimal impedance alignment and enhanced wave dissipation performance. The combination of extremely low density and excellent compressive recovery properties, which can withstand multiple cycles of compression, has strongly advanced the field of biomass aerogels. This multifunctional aerogel material, which combines high EMA efficiency, environmental protection, low cost, thermal management, and compression resistance, has promising application in various electronic devices and military applications.
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