Wang Shanshan, Xu Yingchun, Fu Ruru, Zhu Huanhuan, Jiao Qingze, Feng Tongying, Feng Caihong, Shi Daxin, Li Hansheng, Zhao Yun
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Zhuhai, 100081, People's Republic of China.
School of Materials and the Environment, Beijing Institute of Technology, Zhuhai, 519085, People's Republic of China.
Nanomicro Lett. 2019 Sep 13;11(1):76. doi: 10.1007/s40820-019-0307-8.
Developing lightweight and broadband microwave absorbers for dealing with serious electromagnetic radiation pollution is a great challenge. Here, a novel Fe-Co/N-doped carbon/reduced graphene oxide (Fe-Co/NC/rGO) composite with hierarchically porous structure was designed and synthetized by in situ growth of Fe-doped Co-based metal organic frameworks (Co-MOF) on the sheets of porous cocoon-like rGO followed by calcination. The Fe-Co/NC composites are homogeneously distributed on the sheets of porous rGO. The Fe-Co/NC/rGO composite with multiple components (Fe/Co/NC/rGO) causes magnetic loss, dielectric loss, resistance loss, interfacial polarization, and good impedance matching. The hierarchically porous structure of the Fe-Co/NC/rGO enhances the multiple reflections and scattering of microwaves. Compared with the Co/NC and Fe-Co/NC, the hierarchically porous Fe-Co/NC/rGO composite exhibits much better microwave absorption performances due to the rational composition and porous structural design. Its minimum reflection loss (RL) reaches - 43.26 dB at 11.28 GHz with a thickness of 2.5 mm, and the effective absorption frequency (RL ≤ - 10 dB) is up to 9.12 GHz (8.88-18 GHz) with the same thickness of 2.5 mm. Moreover, the widest effective bandwidth of 9.29 GHz occurs at a thickness of 2.63 mm. This work provides a lightweight and broadband microwave absorbing material while offering a new idea to design excellent microwave absorbers with multicomponent and hierarchically porous structures.
开发用于应对严重电磁辐射污染的轻质宽带微波吸收剂是一项巨大挑战。在此,通过在多孔茧状还原氧化石墨烯(rGO)片上原位生长铁掺杂钴基金属有机框架(Co-MOF),随后进行煅烧,设计并合成了一种具有分级多孔结构的新型铁-钴/氮掺杂碳/还原氧化石墨烯(Fe-Co/NC/rGO)复合材料。Fe-Co/NC复合材料均匀分布在多孔rGO片上。具有多种组分(Fe/Co/NC/rGO)的Fe-Co/NC/rGO复合材料会产生磁损耗、介电损耗、电阻损耗、界面极化以及良好的阻抗匹配。Fe-Co/NC/rGO的分级多孔结构增强了微波的多次反射和散射。与Co/NC和Fe-Co/NC相比,由于合理的组成和多孔结构设计,分级多孔的Fe-Co/NC/rGO复合材料表现出更好的微波吸收性能。其最小反射损耗(RL)在11.28 GHz、厚度为2.5 mm时达到-43.26 dB,在相同厚度2.5 mm时有效吸收频率(RL≤-10 dB)高达9.12 GHz(8.88 - 18 GHz)。此外,在厚度为2.63 mm时出现了9.29 GHz的最宽有效带宽。这项工作提供了一种轻质宽带微波吸收材料,同时为设计具有多组分和分级多孔结构的优异微波吸收剂提供了新思路。