Multi-dimensional C@NiCo-LDHs@Ni aerogel: Structural and componential engineering towards efficient microwave absorption, anti-corrosion and thermal-insulation

气凝胶 材料科学 反射损耗 微波食品加热 衰减 吸收(声学) 保温 复合材料 反射(计算机编程) 电磁辐射 光电子学 图层(电子) 光学 复合数 计算机科学 电信 物理 程序设计语言
作者
Yan Wang,Xiaochuang Di,Jian Chen,Liaona She,Hongge Pan,Biao Zhao,Renchao Che
出处
期刊:Carbon [Elsevier]
卷期号:191: 625-635 被引量:182
标识
DOI:10.1016/j.carbon.2022.02.016
摘要

In recent years, the construction of multidimensional structures has been considered as an effective method to optimize microwave absorbing materials; however, the application scope of absorber is significantly restricted because of the complexity of the environment. Herein, a multidimensional pine nut shell-derived [email protected] double [email protected] chains ([email protected]@Ni) aerogel was successfully synthesized through a simple solvothermal and freeze-drying method. The two-dimensional (2D) NiCo-LDHs were uniformly attached to the surface of the three-dimensional (3D) carbon skeleton in the form of waves or thin layer, subsequently forming a unique dimensional gradient with the one-dimensional (1D) Ni chains. [email protected]@Ni, as a multi-component aerogel, has excellent impedance matching to capture more electromagnetic waves, while the multiple losses from multiple components converted the incident electromagnetic waves into other forms of energy. In addition, the unique 3D structure extends the propagation path, contributing to the further attenuation of electromagnetic waves. The minimum reflection loss (RLmin) of [email protected] [email protected] is −57.4 dB at 13.3 GHz, and the effective absorption bandwidth (EAB, RL ≤ 10 dB) covers 6.4 GHz at a layer thickness of 2.5 mm. Benefiting from its special multidimensional structure, the aerogel exhibits outstanding thermal insulation, compression resistance, and anticorrosive performances, thus paving the way for application of high-efficient microwave absorbing materials in complex environments.
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