4.6 Article

Appraising the dielectric properties and the effectiveness of electromagnetic shielding of graphene reinforced silicone rubber nanocomposite

Journal

NANOTECHNOLOGY REVIEWS
Volume 12, Issue 1, Pages -

Publisher

DE GRUYTER POLAND SP Z O O
DOI: 10.1515/ntrev-2022-0558

Keywords

silicone rubber; graphene; nanocomposites; EMI SE; dielectric

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The aim of this research is to measure the dielectric properties and electromagnetic interference (EMI) shielding effectiveness (SE) of silicone rubber reinforced with graphene nanoplates. Different amounts of graphene are mixed together using a two-roll mill, followed by compression moulding and post-curing. The dielectric and EMI SE parameters are measured using the waveguide transmission line method and a vector network analyzer. Increasing the amount of graphene leads to higher AC conductivity and the highest EMI SE is achieved at 7wt% graphene content.
The aim of this research is to measure the dielectric properties and electromagnetic interference (EMI) shielding effectiveness (SE) of silicone rubber reinforced with graphene nanoplates. In a two-roll mill, different amounts of graphene aremixed together. This is followed by compression moulding at 170 degrees C and post-curing for 4 h at 200 degrees C. Between 1MHz and 1 GHz, the waveguide transmission line method and a vector network analyser are used to measure the dielectric and EMI SE parameters. As the amount of graphene is increased from 0 to 7wt%, AC conductivity goes up, reaching 1.19 x 10(-3) S/cm at 7wt%. The same composition gives the highest EMI SE of 43.22 dB at 1 GHz. The high-frequency structural simulation of different compositions shows how shielding works, and the results agree with what has been seen in experiments.

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