School of Civil and Transportation Engineering, Guangdong University of Technology, Guangzhou 510006, Guangdong, China.
School of Civil and Transportation Engineering, Guangdong University of Technology, Guangzhou 510006, Guangdong, China.
J Colloid Interface Sci. 2022 Mar 15;610:879-892. doi: 10.1016/j.jcis.2021.11.127. Epub 2021 Nov 25.
Herein, two distinct nanocomposites of CaTiO micro-cubes and polygonal SrFeO, both decorated with NiO nanoparticles, were successfully synthesized using hydrothermal method. The physico-chemical features of as-prepared samples were evaluated via XRD, FTIR, UV-vis, BET, XPS, FESEM and EDS analysis. Microwave attenuation features of as-prepared single layer absorbers were determined by VNA analysis in 2-18 GHz. Simulation confirmation was checked by preparing a bi-layer samples and evaluating it using VNA analysis after finding the appropriate thickness of each layer. The reflection loss from each single layer samples containing 20 wt% of each CaTiO/NiO and SrFeO/NiO nanocomposites were -16 dB and -35 dB at 6.3 GHz with 2.5 mm matching thickness respectively. However, the RL was -34 dB at 10 GHz frequency with 2 mm thickness in a bilayer absorber with SrFeO/NiO nanocomposite layer put as absorbing layer with 1 mm thickness and CaTiO/NiO positioned as matching layer with 1 mm thickness. Furthermore, at the X-band frequency, approximately entire band absorption is obtained. The findings demonstrate that adjusting the order and thickness of the layers in a bilayer absorber may readily improve microwave absorption performance. By comparing the results of simulation with real prepared bilayer absorbers, we found that with a 2 mm overall thickness, the bi-layer absorbers display accurate RL values, but not the matching frequency monitored in the simulation process. In reality, this discrepancy was unavoidable.
在此,通过水热法成功合成了两种不同的纳米复合材料,即 CaTiO 微立方体和多边形 SrFeO,均用 NiO 纳米颗粒进行了修饰。通过 XRD、FTIR、UV-vis、BET、XPS、FESEM 和 EDS 分析评估了所制备样品的物理化学特性。通过 VNA 分析在 2-18 GHz 范围内确定了所制备单层吸收体的微波衰减特性。通过制备双层样品并通过 VNA 分析评估来检查模拟确认,在找到每层的合适厚度后进行评估。在包含 20wt%的每个 CaTiO/NiO 和 SrFeO/NiO 纳米复合材料的每个单层样品中,反射损耗分别为-16 dB 和-35 dB,在 6.3 GHz 时匹配厚度分别为 2.5mm。然而,在双层吸收体中,当 SrFeO/NiO 纳米复合材料层作为吸收层厚度为 2mm,CaTiO/NiO 定位为匹配层厚度为 1mm 时,在 10 GHz 频率下的 RL 为-34 dB。此外,在 X 波段频率下,几乎可以获得整个频带的吸收。研究结果表明,通过调整双层吸收体中各层的顺序和厚度,可以轻松改善微波吸收性能。通过将模拟结果与实际制备的双层吸收器进行比较,我们发现,在总厚度为 2mm 的情况下,双层吸收器可以显示出准确的 RL 值,但与模拟过程中监测的匹配频率不同。实际上,这种差异是不可避免的。