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April 30, 2010The Journal of Physical Chemistry C264 citations

Synthesis, Multi-Nonlinear Dielectric Resonance, and Excellent Electromagnetic Absorption Characteristics of Fe3O4/ZnO Core/Shell Nanorods

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YCYujin ChenFZFan ZhangGZGuogang Zhao

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Abstract

Fe 3 O 4 /ZnO core/shell nanorods are successfully fabricated by combing an inorganic-phase reaction with a hydrogen annealing process. The transmission electron microscopy analysis indicates that the diameter and the length of the core/shell nanorods are 25−80 and 0.35−1.2 μm, respectively. Electromagnetic properties of the core/shell nanorod−wax composites are investigated. The permittivity of the composites shows four dielectric resonant peaks in 2−18 GHz, which can be explained by the transmission line theory. The resonant behavior mainly results from interface polarization induced by the special core/shell structures, dipole polarization of both Fe 3 O 4 and ZnO, and electron transfer between Fe 2+ and Fe 3+ ions in Fe 3 O 4 . The maximum reflection loss is about −30 dB at 10.4 GHz for the composites with a thickness of 1.5 mm, and the absorption bandwidth with the reflection loss below −20 dB is up to 11 GHz for an absorber with the thickness in 2−4 mm. Thus, our results demonstrate that the Fe 3 O 4 /ZnO core/shell nanorods are attractive candidates for a new kind of the electromagnetic wave absorptive materials.

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Cite This Study

Chen et al. (2010) studied this question.

synapsesocial.com/papers/6a6f3f3f2163a0a01bc392fchttps://doi.org/10.1021/jp912178q
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