Heterostructure design of Ni/C/porous carbon nanosheet composite for enhancing the electromagnetic wave absorption

材料科学 反射损耗 纳米复合材料 复合数 介电损耗 电介质 微波食品加热 导电体 复合材料 散射 纳米颗粒 纳米技术 吸收(声学) 光电子学 光学 计算机科学 电信 物理
作者
Xiaochuang Di,Yan Wang,Zhao Lu,Runrun Cheng,Longqi Yang,Xinming Wu
出处
期刊:Carbon [Elsevier BV]
卷期号:179: 566-578 被引量:220
标识
DOI:10.1016/j.carbon.2021.04.050
摘要

The development of advanced electromagnetic wave (EMW) materials with high reflection loss (RL), wide effective absorption bandwidth (EAB), low filler loading and thin matching thickness is considered as an effective strategy to solve the EMW pollution in emerging areas. Nevertheless, it is still a tremendous challenge to design a reasonable structure and a proper composition to meet the requirements of advanced absorbing materials. Herein, a nanocomposite composed of nitrogen-doped (N-doped) biomass-derived carbon (BDC) and Ni/C nanosphere derived from Ni-MOF ([email protected]/C) has been designed and synthesized. The results show that the continuous conductive network can not only improve the conductive loss, but also provide the prospect for the reflection and scattering of EMW. Also, the petal-like [email protected]/C nanocomposite with a great quantity defects and heterogeneous interfaces delivers multi-polarization. At the same time, the ultra-small Ni nanoparticles and Ni/C nanospheres with good dispersion on carbon materials are beneficial toward dielectric-magnetic combination, resulting in impedance matching. Accordingly, the optimized [email protected]/C nanocomposite exhibits extraordinary microwave absorption performance. Precisely, when the filler loading is 20 wt%, the maximum RL of [email protected]/C reaches −73.8 dB and a corresponding EAB is up to 5.8 GHz with 2.2 mm thickness. This work fills the vacuum in the study of the nanocomposites composed of MOF derivatives and BDC. It provides a reference value for the synthetic strategies in designing high-performance absorbing materials.
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