Shang Qiong, Feng Huixia, Liu Jianpu, Lian Qing, Feng Zeyu, Chen Nali, Qiu Jianhui, Wu Hongjing
College of Petrochemical Technology, Lanzhou University of Technology, Lanzhou 730050, China; School of Chemistry and Chemical Engineering, Lanzhou City University, Lanzhou 730070, China.
College of Petrochemical Technology, Lanzhou University of Technology, Lanzhou 730050, China; State Key Laboratory of Advanced Processing and Recycling of Nonferrous Metals, Lanzhou University of Technology, Lanzhou 730050, China.
J Colloid Interface Sci. 2021 Feb 15;584:80-91. doi: 10.1016/j.jcis.2020.09.120. Epub 2020 Oct 6.
In this study, a series of hollow ZnFeO@polyaniline composites (ZFO@PANI) were synthesized by a facile solvothermal process and followed by in-situ chemical oxidation polymerization method, and then evaluated as microwave absorption (MA) absorbers. The effect of ZFO content on the electrical conductivity, electromagnetic parameters and MA performance of the ZFO@PANI composites was also elaborately investigated. As anticipated, the optimized composites of S2 exhibits the minimum reflection loss (RL) of -59.44 dB at 11.04 GHz with a matching thickness of 2.31 mm, and the broadest effective absorption bandwidth (EAB, RL < -10 dB, >90% absorption) of up to 4.65 GHz (13.35-18.0 GHz) at 1.72 mm. Noticeably, by adjusting the thickness from 1.5 to 5.0 mm, it can be observed that its RL values are all much lower than -10 dB and the qualified EAB can cover the entire C, X and Ku bands. The enhanced MA performance of S2 is mainly due to the efficient synergistic effect between dielectric loss (PANI) and magnetic loss (ZFO nanosphere), and thus achieving the relative balance of impedance matching (appropriate ZFO content) and attenuation capability. Therefore, it has great prospect to be explored as attractive candidate in practical application.
在本研究中,通过简便的溶剂热法并结合原位化学氧化聚合法合成了一系列中空的ZnFeO@聚苯胺复合材料(ZFO@PANI),然后将其作为微波吸收(MA)吸收剂进行评估。还详细研究了ZFO含量对ZFO@PANI复合材料的电导率、电磁参数和MA性能的影响。正如预期的那样,优化后的复合材料S2在11.04 GHz处表现出-59.44 dB的最小反射损耗(RL),匹配厚度为2.31 mm,在1.72 mm厚度时具有高达4.65 GHz(13.35 - 18.0 GHz)的最宽有效吸收带宽(EAB,RL < -10 dB,吸收率>90%)。值得注意的是,通过将厚度从1.5调整到5.0 mm,可以观察到其RL值均远低于-10 dB,并且合格的EAB可以覆盖整个C、X和Ku波段。S2增强的MA性能主要归因于介电损耗(PANI)和磁损耗(ZFO纳米球)之间的有效协同效应,从而实现了阻抗匹配(适当的ZFO含量)和衰减能力的相对平衡。因此,它作为实际应用中有吸引力的候选材料具有很大的探索前景。