| Literature DB >> 26857939 |
Jie Zhao1, Jian Yu1, Yu Xie1,2, Zhanggao Le3, Xiaowei Hong1, Suqin Ci1,2, Junhong Chen2, Xiaoyan Qing1, Weijie Xie1, Zhenhai Wen1,2,4.
Abstract
We report herein the synthesis of a novel nest structured electromagnetic composite through in-situ chemical polymerization of 3-methyl thiophene (3MT) in the presence of the BaFe11.92(LaNd)0.04O19-TiO2 (BFTO) nanoparticles and MCNTs. As an absorbing material, the BFTO/MCNTs/P3MT/wax composites were prepared at various loadings of BFTO/MCNTs/P3MT (0.2:0.10:1.0 ~ 0.2:0.30:1.0), and they exhibited strong microwave absorption properties in the range of 1.0-18 GHz. When the loading of BFTO/MCNTs/P3MT is 0.2:0.30:1.0, the composite has a strongest absorbing peak at 11.04 GHz, and achieves a maximum absorbing value of -21.56 dB. The absorbing peak position moves to higher frequencies with the increase of MCNTs content. The mechanism for microwave absorption of these composites has been explained in detail.Entities:
Year: 2016 PMID: 26857939 PMCID: PMC4746644 DOI: 10.1038/srep20496
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic of the BFTO/MCNTs/P3MT composites.
Figure 2XRD patterns of (a) BFTO, (b) BFTO/MCNTs/P3MT, (c) P3MT.
Figure 3FTIR spectra of P3MT (a), BFTO/MCNTs/P3MT (b) and BFTO (c).
Figure 4DTA-TG analysis of (a) P3MT and (b) BFTO/MCNTs/P3MT.
Figure 5SEM (a) and TEM (b) images of BFTO/MCNTs/P3MT.
Figure 6The ε′ (a), ε″ (b), μ′ (c), μ″ (d), tgδε (e) and tgδμ (f) of the BFTO/MCNTs/P3MT/wax composites with different BFTO/MCNTs/P3MT loading.
Figure 7Microwave reflection loss (RL) curves of the BFTO/MCNTs/P3MT composites of (a) 0.2:0.10:1.0, (b) 0.2:0.15:1.0, (c) 0.2:0.20:1.0, (d) 0.2:0.25:1.0, (e) 0.2:0.30:1.0 with different thicknesses in the frequency range of 1.0–18.0 GHz; (f) Microwave reflection loss (RL) curves of the BFTO/MCNTs/P3MT composites with a thickness of 2.0 mm in the frequency range of 1.0–18.0 GHz.