材料科学
微波食品加热
制作
反射损耗
复合数
电介质
碳化
复合材料
带隙
氧化剂
介电损耗
多孔性
碳纤维
纳米孔
吸收(声学)
光电子学
纳米技术
扫描电子显微镜
化学
病理
有机化学
物理
量子力学
替代医学
医学
作者
Huili Yang,Zhongjing Shen,Hualong Peng,Zhiqiang Xiong,Chongbo Liu,Yu Xie
标识
DOI:10.1016/j.cej.2020.128087
摘要
Nano-porous carbon (NPC) composites derived from metal-organic frameworks (MOFs) possess effective microwave absorption (MA) properties. However, the fabrication of MOF-derived NPC composites with full-band MA performance is challenging. In this work, the effect of the bandgap on the microwave dielectric behavior of Mn-MOF derivatives was investigated. The results demonstrated that a narrower MnO2 bandgap resulted in higher conductivity and a larger dielectric constant of the corresponding materials. The three-dimensional (3D) [email protected] composites achieved excellent low-frequency MA ability. The maximum reflection loss (RL) of [email protected] carbonized at 800 °C reached −54.38 dB at 5.12 GHz. The 1D-3D mixed-dimensional MnO2@NPC composites with the ultra-strong MA response in the full band were obtained by oxidizing [email protected] to MnO2@NPC. MnO2@NPC-800 showed superior MA capacity with the maximum RL value equal to −63.21 dB at 12.48 GHz and 2.05 mm thickness. The maximum RL values in S, C, X, Ku bands also exceeded −50 dB. Such an outstanding MA performance of MnO2@NPC-800 composite was attributed to the MnO2 presence and its multi-dimensional structure. This work provides the foundation for the fabrication of MOF-derived materials capable of full-band MA.
科研通智能强力驱动
Strongly Powered by AbleSci AI