反射损耗
材料科学
微波食品加热
阻抗匹配
吸收(声学)
衰减
气凝胶
介电常数
复合材料
复合数
电导率
散射
光学
光电子学
电阻抗
电介质
电信
化学
计算机科学
物理
电气工程
物理化学
工程类
作者
Man He,Qiang Liao,Yuming Zhou,Zhaoping Song,Yongjuan Wang,Shuangjiang Feng,Ran Xu,Hao Peng,Xi Chen,Yifan Kang
出处
期刊:Langmuir
[American Chemical Society]
日期:2022-01-12
卷期号:38 (3): 945-956
被引量:36
标识
DOI:10.1021/acs.langmuir.1c02237
摘要
Carbon fiber aerogel (CFA) derived from cotton wool as a potential microwave absorbing material has received intensive attention owing to the low density, high conductivity, large surface area, and low cost, but its applications are limited by the relatively high complex permittivity. To solve this problem, TiO2@C (derived from Ti3C2Tx) is introduced into CFA to prepare lightweight TiO2@C/CFA composites based on electromagnetic (EM) parameter optimization and enhanced EM wave attenuation performance. The microwave absorption capacity of TiO2@C/CFA-2 composite is obviously better than that of CFA. It is confirmed that good impedance matching derived from the combination of TiO2@C and CFA is the main factor to achieve excellent microwave absorption. Moreover, the improved microwave absorption capabilities are closely related to multiple EM wave absorbing mechanisms including multiple reflections and scattering, dipolar and interfacial polarization, and conductivity loss. TiO2@C/CFA-2 possesses a maximum reflection loss (RL) of -43.18 dB at a low response frequency of 6.0 GHz. As the matching thickness is less than 2.0 mm, the maximum RL values can still exceed -20 dB, and at the same time, the wide effective absorption bandwidth (EAB) below -10 dB achieves 4.36 GHz at only 1.9 mm thickness. Our work confirms that the lightweight and high-performance TiO2@C/CFA composites are promising choices and offer a new approach to design and construct carbon-based microwave absorbents derived from biomass.
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