| Literature DB >> 31963561 |
Hui Liu1, Guangzhen Cui1, Ling Li2, Zhi Zhang1, Xuliang Lv2, Xinxin Wang1.
Abstract
Cobalt sulfideEntities:
Keywords: CoS; PPy; core-shell structure; microwave absorption
Year: 2020 PMID: 31963561 PMCID: PMC7022952 DOI: 10.3390/nano10010166
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Figure 1Schematic diagram of preparation process of CoS@PPy composites.
Figure 2(a) XRD results of CoS and CoS@PPy and (b) FTIR spectra of PPy and CoS@PPy.
Figure 3XPS spectra of CoS@PPy: (a) C 1s; (b) N 1s; (c) Co 2p; (d) S 2p.
Figure 4STEM of CoS@PPy (a) and elemental mapping images of (b) C, (c) Co, (d) N, (e) S.
Figure 5SEM images of CoS (a); CoS@PPy (b,c); TEM images of CoS (d); and CoS@PPy (e,f).
Figure 6(a) The real and imaginary parts of the complex permittivity and complex permeability of CoS (15 wt %); The real and imaginary parts of the complex permittivity and complex permeability of CoS@PPy with the filler loading of (b) 15 wt %, (c) 20 wt %, (d) 25 wt %.
Figure 7(a) The Cole-Cole plots of CoS (15 wt %); the Cole-Cole plots of CoS@PPy with the filler loading of (b) 15 wt %, (c) 20 wt %, (d) 25 wt %.
Figure 8Dielectric loss tangent of CoS and CoS@PPy with different filler loadings (a); the attenuation constant of CoS and CoS@PPy with different filler loadings (b).
Figure 9The reflection loss curves, the absorber thickness t, and impedance matching curves obtained for various thicknesses for the CoS@PPy composites containing (a) 15 wt %, (b) 20 wt %, (c) 25 wt %.
Figure 10The calculated reflection loss of CoS@PPy composites at the loading of 20 wt % (a) and corresponding three-dimensional presentation (b) and its contour map (c).
Figure 11The absorption mechanism diagram of CoS@PPy composites.