微波食品加热
材料科学
反射损耗
碳化
碳纤维
吸收(声学)
多孔性
复合数
阻抗匹配
化学工程
纳米技术
复合材料
电阻抗
扫描电子显微镜
物理
量子力学
工程类
电气工程
作者
Hao Zheng,Kai Nan,Wei Wang,Qingwei Li,Yan Wang
标识
DOI:10.1016/j.jcis.2023.09.121
摘要
Biomass-derived porous carbon materials have great potential for the development of lightweight and efficient broadband microwave absorbers. In this study, we reported the successful immobilization of Co3O4/CoFe2O4 nanocubes on porous carbon derived from ginkgo biloba shells by activated carbonization and electrostatic self-assembly processes. The optimal reflection loss value of the prepared BPC@Co3O4/CoFe2O4 reaches -68.5 dB when the filling load is 10 wt%, and the effective absorption bandwidth is 6.2 GHz with a matching thickness of 2 mm. The excellent microwave absorption (MA) performance is attributed to the rational three-dimensional structural design, the modulation of magnetic/carbon components, the optimized impedance matching, and the coordinated action of multiple mechanisms. It was further demonstrated by high-frequency structural simulation that the composite can effectively dissipate microwave energy in practical applications. Therefore, the results indicate a favorable potential of the synthesis and application of semiconductor/magnetic component/biomass-derived carbon microwave absorbing materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI