Ternary Mo2C/Co/C composites with enhanced electromagnetic waves absorption

材料科学 反射损耗 介电损耗 三元运算 复合材料 电导率 纳米颗粒 极化(电化学) 吸收(声学) 碳化物 纳米棒 电介质 复合数 光电子学 纳米技术 化学 物理化学 程序设计语言 计算机科学
作者
Yahui Wang,Xuandong Li,Xijiang Han,Ping Xu,Liru Cui,Honghong Zhao,Dawei Liu,Fengyuan Wang,Yunchen Du
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:387: 124159-124159 被引量:102
标识
DOI:10.1016/j.cej.2020.124159
摘要

Transition metal carbides with good chemical stability and moderate dielectric constants are becoming popular electromagnetic (EM) absorption materials. In this work, Mo2C/Co/C composites, a ternary loss system (conductivity loss, polarization loss, and magnetic loss) for EM absorption, have been successfully fabricated by rationally regulating the growth of ZIF-67 on the surface of MoO3 nanorods and subsequent pyrolysis process. The chemical compositions of Mo2C/Co/C composites indeed play a dominant role in tailoring their EM functions. It is revealed that conductivity loss, polarization loss, and magnetic loss are together responsible for the attenuation of EM energy. Although the involvement of Mo2C nanoparticles weakens magnetic loss capability to some extent, there will be a positive reinforcement in conductivity loss through the synergistic effects among different components. In addition, Mo2C nanoparticles can further provide considerable dipole orientation polarization and interfacial polarization. Among these ternary composite, MCC-50 with 30.9% of carbon, 53.6% of Mo2C, and 15.5% of Co, exhibits the best EM absorption performance, whose reflection loss intensity and qualified response bandwidth are superior to those of most carbide-based composites in previous studies. These results suggest that the rational integration of components with different loss mechanisms will be an effective pathway to enhance EM absorption.
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