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High-performance electromagnetic wave absorption in cobalt sulfide flower-like nanospheres

Hao Yuan, Zhidong Liu, Yani Zhang, Jinfeng Ding, Yuping Sun, Min Zhang, Shugang Tan

2022RSC Advances17 citationsDOIOpen Access PDF

Abstract

A heterophase cobalt sulfide absorbing material with petal-like surface structure was prepared by a simple hydrothermal method. The cobalt sulfide sample with the optimal microwave absorption capacity was achieved through regulating the reaction temperature. By regulating the reaction temperature to 200 °C, the optimal reflection loss was -48.4 dB at 16.8 GHz with filler loading of 50%, and the effective absorption bandwidth was 4.3 GHz at Ku band corresponding to a thickness of only 1.5 mm. The petal-like surface structure of cobalt sulfide gradually disappears as the reaction temperature rises, and the reduction of specific surface area has a negative effect on the microwave absorption capacity of the sample. Meanwhile, by adjusting the sample thickness from 1.5 to 5.0 mm, the effective absorption bandwidth could cover almost the whole test frequency range. The results show that the cobalt sulfide absorbing material with regulated reaction temperature has a strong electromagnetic wave absorption ability, light weight, thin thickness and simple synthesis, which is a promising microwave absorbing material for actual application.

Topics & Concepts

Reflection lossCobaltCobalt sulfideMaterials scienceMicrowaveSulfideAbsorption (acoustics)Hydrothermal circulationChemical engineeringComposite materialAnalytical Chemistry (journal)ChemistryComposite numberMetallurgyOrganic chemistryPhysicsElectrochemistryElectrodePhysical chemistryEngineeringQuantum mechanicsElectromagnetic wave absorption materialsAdvanced Antenna and Metasurface TechnologiesMetamaterials and Metasurfaces Applications
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