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构建 CoZnO/CSP 生物质衍生碳复合材料,具有 7.2GHz 的宽有效吸收带宽和优异的微波吸收性能。

Construct of CoZnO/CSP biomass-derived carbon composites with broad effective absorption bandwidth of 7.2 GHz and excellent microwave absorption performance.

机构信息

School of Mechanical and Precision Instrument Engineering, Xi'an University of Technology, Xi'an 710048, PR China.

School of Mechanical and Precision Instrument Engineering, Xi'an University of Technology, Xi'an 710048, PR China; China National Silicon Substrate LED Engineering Technology Research Center, Nanchang University, 330096, PR China.

出版信息

J Colloid Interface Sci. 2023 Jun;639:160-170. doi: 10.1016/j.jcis.2023.02.050. Epub 2023 Feb 15.

DOI:10.1016/j.jcis.2023.02.050
PMID:36804789
Abstract

Biomass-carbon materials have excellent electromagnetic wave attenuation properties, which is one of the essential factors for developing ultra-thin matched-thickness, and high-performance microwave absorption materials. This study reports a two-step procedure consisting of carbonization and subsequent in-situ growth for preparing a wrinkle-like multilayer biomass-derived composites with magnetic Co particles and ZnO particles (CoZnO/C-X). The synergistic effect of a wrinkle-like multilayer structure and Co and ZnO particles, as well as the existence of many heterogeneous interfaces in the composites structure, and efficiently creates multiple scattering and reflections, which gives the composites the strong microwave absorption properties. The minimum reflection loss value (RL) of CoZnO/C-X reaches - 54.90 dB with a thickness of 1.8 mm, and the effective absorption bandwidth (lower than - 10 dB) is 7.2 GHz covering from 10.8 GHz to18.0 GHz with matching thickness of 2.0 mm. Furthermore, the reasonable dielectric/magnetic losses, optimized impedance matching and enhanced polarization loss play an indispensable role among improving microwave absorption performance. Thus, this result provides a good potential method for preparation of magnetic particle/metal oxide/biomass-derived carbon microwave absorbing structural materials.

摘要

生物质碳材料具有优异的电磁波衰减性能,这是开发超薄匹配厚度和高性能微波吸收材料的重要因素之一。本研究报告了一种两步法,包括碳化和随后的原位生长,制备了具有磁性 Co 粒子和 ZnO 粒子的褶皱状多层生物质衍生复合材料(CoZnO/C-X)。褶皱状多层结构以及 Co 和 ZnO 粒子的协同效应,以及复合材料结构中存在的许多非均相界面,有效地产生了多次散射和反射,赋予了复合材料强的微波吸收性能。CoZnO/C-X 的最小反射损耗值(RL)达到-54.90dB,厚度为 1.8mm,有效吸收带宽(低于-10dB)为 7.2GHz,覆盖 10.8GHz 至 18.0GHz,匹配厚度为 2.0mm。此外,合理的介电/磁损耗、优化的阻抗匹配和增强的极化损耗在改善微波吸收性能方面起着不可或缺的作用。因此,该结果为制备磁性粒子/金属氧化物/生物质衍生碳微波吸收结构材料提供了一种很好的潜在方法。

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