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Dielectric, magnetic and microwave absorbing properties of polyaniline-Co<sub class="a-plus-plus">0.7sub>Cr<sub class="a-plus-plus">0.1sub>Zn<sub class="a-plus-plus">0.2sub>Fe<sub class="a-plus-plus">2sub>O<sub class="a-plus-plus">4sub> composites
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文摘
The spinel cobalt chromium zinc ferrites (Co<sub>0.7sub>Cr<sub>0.1sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub>) and the polyaniline (PANI)-Co<sub>0.7sub>Cr<sub>0.1sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub> composites were prepared by polyacrylamide gel and an in situ polymerization method, respectively. The structure of the synthesized material was characterized by X-ray diffraction (XRD) and Fourier transform infrared spectrometer (FTIR), which shows that the spinel Co<sub>0.7sub>Cr<sub>0.1sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub> ferrites and the PANI-Co<sub>0.7sub>Cr<sub>0.1sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub> composites are obtained. As a small amount of Co2+ in the octahedron ferrite is replaced by Cr3+, the lattice constant of Co<sub>0.8sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub> ferrites reduces from 0.8409 to 0.8377 nm. The magnetic properties of the two materials were investigated by vibrating sample magnetometer (VSM). The VSM results confirm that the saturation magnetization (M<sub>ssub>), remanent magnetization (M<sub>rsub>) and coercive force (H<sub>csub>) of the PANI-Co<sub>0.7sub>Cr<sub>0.1sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub> composites are 8.80 mA·m2·g−1, 3.14 mA·m2·g−1 and 37.22 kA·m−1, respectively, which are smaller than those of the Co<sub>0.7sub>Cr<sub>0.1sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub> ferrites. The microwave absorbing capability of the two materials was studied by waveguide method. In the frequency range of 5–20 GHz, two reflection loss maximum values of the PANI-Co<sub>0.7sub>Cr<sub>0.1sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub> composites appear at 14.1 and 17.9 GHz with −13.17 and −15.36 dB, respectively, which are obviously higher than those of the Co<sub>0.7sub>Cr<sub>0.1sub>Zn<sub>0.2sub>Fe<sub>2sub>O<sub>4sub> ferrites.

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