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Broadband microwave absorption of CoNi@C nanocapsules enhanced by dual dielectric relaxation and multiple magnetic resonances
251
Citations
28
References
2013
Year
Materials ScienceElectromagnetic MetamaterialsElectrical EngineeringNatural ResonanceEngineeringDual Dielectric RelaxationNanomaterialsNanotechnologyApplied PhysicsMetamaterialsMultiple Magnetic ResonancesMicrowave EngineeringMicrowave SynthesisElectrical PropertyReflection LossHigh Impedance Surfaces
Dual dielectric relaxation of the permittivity and multiple magnetic resonances of the permeability (including one natural resonance and two exchange resonance modes) are observed in CoNi@C nanocapsules in the same 5–17 GHz frequency range which leads to a better electromagnetic-wave absorption than earlier reported for nanocomposites. A reflection loss (RL) exceeding −25 dB is obtained in a wide frequency range of 5–17 GHz when an appropriate absorber thickness between 2 and 4.8 mm is chosen. For a 2 mm absorber layer, a RL value exceeding −10 dB is achieved in the broad frequency range 12–18 GHz, which covers the whole Ku-band.
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