Zhao Honghong, Wang Fengyuan, Cui Liru, Xu Xianzhu, Han Xijiang, Du Yunchen
MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, 150001, People's Republic of China.
Nanomicro Lett. 2021 Oct 11;13(1):208. doi: 10.1007/s40820-021-00734-z.
Magnetic carbon-based composites are the most attractive candidates for electromagnetic (EM) absorption because they can terminate the propagation of surplus EM waves in space by interacting with both electric and magnetic branches. Metal-organic frameworks (MOFs) have demonstrated their great potential as sacrificing precursors of magnetic metals/carbon composites, because they provide a good platform to achieve high dispersion of magnetic nanoparticles in carbon matrix. Nevertheless, the chemical composition and microstructure of these composites are always highly dependent on their precursors and cannot promise an optimal EM state favorable for EM absorption, which more or less discount the superiority of MOFs-derived strategy. It is hence of great importance to develop some accompanied methods that can regulate EM properties of MOFs-derived magnetic carbon-based composites effectively. This review comprehensively introduces recent advancements on EM absorption enhancement in MOFs-derived magnetic carbon-based composites and some available strategies therein. In addition, some challenges and prospects are also proposed to indicate the pending issues on performance breakthrough and mechanism exploration in the related field.
磁性碳基复合材料是电磁(EM)吸收领域最具吸引力的候选材料,因为它们能够通过与电波和磁波相互作用来终止空间中多余电磁波的传播。金属有机框架(MOFs)已展现出作为磁性金属/碳复合材料牺牲前驱体的巨大潜力,因为它们为实现磁性纳米颗粒在碳基体中的高度分散提供了良好平台。然而,这些复合材料的化学成分和微观结构总是高度依赖于它们的前驱体,并且无法保证有利于电磁吸收的最佳电磁状态,这或多或少削弱了MOFs衍生策略的优势。因此,开发一些能够有效调节MOFs衍生磁性碳基复合材料电磁性能的辅助方法具有重要意义。本综述全面介绍了MOFs衍生磁性碳基复合材料在增强电磁吸收方面的最新进展以及其中一些可用策略。此外,还提出了一些挑战和前景,以指出相关领域在性能突破和机理探索方面的待解决问题。