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填充有基于纳米多孔间苯二酚甲醛的碳气凝胶的聚甲基丙烯酸甲酯复合材料的电磁和微波吸收特性

Electromagnetic and microwave absorption characteristics of PMMA composites filled with a nanoporous resorcinol formaldehyde based carbon aerogel.

作者信息

Mahani A Abolghasemi, Motahari S, Nayyeri V

机构信息

School of Chemical Engineering, Faculty of Engineering, University of Tehran P. O. Box: 11365/4563 Tehran Iran

Antenna and Microwave Research Laboratory, Iran University of Science and Technology Tehran Iran

出版信息

RSC Adv. 2018 Mar 19;8(20):10855-10864. doi: 10.1039/c8ra00196k. eCollection 2018 Mar 16.

Abstract

Nanostructured carbons have opened up new perspectives in fields of electromagnetic (EM) applications. The present study aims at the processing of microwave absorbing (MA) materials based on carbon aerogels (CAs) in polymethyl methacrylate (PMMA) matrix to be used in X-band frequency. CAs were synthesized by carbonization of a sol-gel derived organic gel from resorcinol and formaldehyde as starting materials. Microwave attenuation properties of the prepared composites were investigated in terms of CAs particle size distribution (PSD) and mass fraction. To do so, the optimal PSD was initially determined by assessing the EM attenuation performance of the CAs/PMMA composites with constant mass loading (10 wt%) and differing particle sizes. Next, the EM properties of the selected CAs with the optimal particle size was measured as a function of mass fraction varying from 1 to 15 wt% in order to obtain a highly efficient CAs based MA. The results indicate that the dielectric loss of CAs composites can be enhanced by optimizing the PSD as well as the mass fraction of CAs. The effective absorption bandwidth of composites containing 10 wt% of CAs exceeded 3.7 GHz at a very thin thickness of 1.9 mm indicating that these materials present advantages as microwave absorbers.

摘要

纳米结构碳在电磁(EM)应用领域开辟了新的前景。本研究旨在制备基于聚甲基丙烯酸甲酯(PMMA)基体中碳气凝胶(CA)的微波吸收(MA)材料,用于X波段频率。CA是通过以间苯二酚和甲醛为起始原料的溶胶 - 凝胶衍生有机凝胶碳化合成的。根据CA的粒径分布(PSD)和质量分数研究了制备的复合材料的微波衰减特性。为此,首先通过评估具有恒定质量负载(10 wt%)和不同粒径的CA/PMMA复合材料的电磁衰减性能来确定最佳PSD。接下来,测量具有最佳粒径的所选CA的电磁特性随质量分数从1 wt%到15 wt%变化的函数关系,以获得高效的基于CA的MA。结果表明,通过优化CA的PSD以及质量分数,可以提高CA复合材料的介电损耗。含有10 wt% CA的复合材料在1.9 mm的非常薄的厚度下有效吸收带宽超过3.7 GHz,表明这些材料作为微波吸收剂具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ac5/9078940/96bd775a4acb/c8ra00196k-f9.jpg

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