4.7 Article

Tunable negative dielectric properties of magnetic CoFe2O4/graphite-polypyrrole metacomposites

期刊

ADVANCED COMPOSITES AND HYBRID MATERIALS
卷 5, 期 2, 页码 899-906

出版社

SPRINGERNATURE
DOI: 10.1007/s42114-022-00485-4

关键词

Metacomposites; Negative dielectric constant; CoFe2O4/graphite-PPy

资金

  1. Research Starting Foundation of Shaanxi University of Science and Technology [2019QNBJ01]
  2. Research Foundation for Thousand Young Talent Plan of Shaanxi province of China
  3. National Natural Science Foundation of China [51972200, 51902192]
  4. Natural Science Basic Research Program of Shaanxi [2022JQ-441]
  5. Taif University, Taif, Saudi Arabia [TURSP-2020/267]

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In this study, CoFe2O4/graphite-polypyrrole (PPy) metacomposites with negative dielectric constant were successfully prepared using the surface-initiated-polymerization method. The negative dielectric constant was regulated by changing the content of CoFe2O4/graphite. The crystal structure, chemical structure, and microstructure of the samples were characterized, and the magnetic properties were reported. This work provides guidance for the fabrication of polymer-based metacomposites with tunable negative dielectric constant.
In this work, the CoFe2O4/graphite-polypyrrole (PPy) metacomposites with negative dielectric constant were prepared by the surface-initiated-polymerization method. The dielectric constant of CoFe2O4/graphite composites is positive, while the dielectric constant of CoFe2O4/graphite-PPy composites is negative. The regulation of the negative dielectric constant of CoFe2O4/graphite-PPy metacomposites was accomplished by changing the content of CoFe2O4/graphite. The negative dielectric constant of 10.0 wt% CoFe2O4/graphite-PPy metacomposites reaches -1.82 x 10(3) in the measured frequency range. The crystal structure, chemical structure, and microstructure of all the samples were analyzed by the XRD, FT-IR, Raman, and SEM systematically. All the characterizations indicate that the CoFe2O4/graphite-PPy metacomposites were successfully fabricated. Meanwhile, the magnetic properties of the samples were reported in this work. The remanence, coercivity, and saturation magnetization is 10.50 emu g(-1), 0.314 T, and 25.34 emu g(-1) for CoFe2O4/graphite-PPy metacomposites with a CoFe2O4/graphite loading of 40.0 wt%. This work provides the guideline for fabrication of polymer-based metacomposites with tunable negative dielectric constant.

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