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- W2885723202 abstract "Herein, we report high electromagnetic interference (EMI) shielding effectiveness of −40 dB in the Ku-band (for a 600 μm thick film) through a unique core–shell heterostructure consisting of a ferritic core (Fe3O4) and a conducting shell (multiwalled carbon nanotubes, MWCNTs) supported onto a dielectric spacer (here SiO2). In recent times, materials with good flexibility, heat dissipation ability, and sustainability together with efficient EMI shielding at minimal thickness are highly desirable, especially if they can be easily processed into thin films. The resulting composites here shielded EM radiation mostly through absorption driven by multiple interfaces provided by the heterostructure. The shielding value obtained here is fairly superior among the different polymer nanocomposite-based EMI shielding materials. In addition to EMI shielding capability, this composite material exhibits outstanding heat dissipation ability (72 °C to room temperature in less than 90 s) as well as high heat sustainability. The composite material retained its EMI shielding property even after repeated heat cycles, thereby opening new avenues in the design of lightweight, flexible, and sustainable EMI shielding materials." @default.
- W2885723202 created "2018-08-22" @default.
- W2885723202 creator A5026995876 @default.
- W2885723202 creator A5044875412 @default.
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- W2885723202 date "2018-08-14" @default.
- W2885723202 modified "2023-10-05" @default.
- W2885723202 title "Core–Multishell Heterostructure with Excellent Heat Dissipation for Electromagnetic Interference Shielding" @default.
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- W2885723202 doi "https://doi.org/10.1021/acsami.8b10819" @default.
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