Graphene aerogel encapsulated double carbon shell CoFe@C@C nanocubes for construction of high performance microwave absorbing materials

气凝胶 石墨烯 材料科学 微波食品加热 反射损耗 碳纤维 介电损耗 吸收(声学) 电介质 复合材料 热解 普鲁士蓝 纳米技术 化学工程 光电子学 复合数 电极 化学 物理化学 电化学 工程类 量子力学 物理
作者
Jing-Zhou Chen,Bu-Yue Lei,Yun‐Lei Hou,Jia‐Ting Lei,Peipei Chen,Ziang Li,Dong‐Lin Zhao
出处
期刊:Carbon [Elsevier BV]
卷期号:224: 119081-119081 被引量:38
标识
DOI:10.1016/j.carbon.2024.119081
摘要

Recently, Prussian blue analogs (PBAs) have attracted much attention due to their transformation into dielectric/magnetic coupled composites after pyrolysis at high temperatures and their ability to maintain their basic morphology. However, designing efficient microwave-absorbing materials using PBAs is still a challenge. In this work, Co–Fe PBA was prepared by wet chemical method and graphene aerogel-encapsulated double carbon-shell CoFe@C@C nanocubes (CFCCG) were prepared by stirred self-polymerization and hydrothermal method, and heat-treated at different temperatures to obtain composites consisting of core-shell-structured PBA-derived particles encapsulated in a double layer of graphene and polydopamine (PDA). The addition of graphene not only reduces the density of the derived material but also effectively disperses the CoFe@C@C nanocubes to prevent the generated highly conductive carbon layer from adhering to improve the impedance matching, as well as introduces a large number of heterogeneous interfaces to improve the loss capability. Thanks to which the CFCCG7 composites have a reflection loss of −66.33 dB and an effective microwave absorption frequency covering the entire Ku-band. This work provides a new approach for rational design of multilayer carbon structure-coated PBA-based microwave absorbing materials.
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