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Functional and Structural Facts of Effective Electromagnetic Interference Shielding Materials: A Review

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ACS OMEGA
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AMER CHEMICAL SOC
DOI: 10.1021/acsomega.2c05815

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Electromagnetic interference (EMI) shielding effectiveness (SE) systems have gained significant attention due to the rapid development in electronics and telecommunications, posing a concern in modern society. The combination of magnetic alloys and conducting nonmagnetic materials, such as carbon/graphene, is a practical approach for EMI SE.
Electromagnetic interference (EMI) shielding effectiveness (SE) systems have received immense attention from researchers owing to the rapid development in electronics and telecommunications, which is an alarming matter in our modern society. This radiation can damage the performance of EM devices and may harmfully affect animal/human health. The harmonious utilization of magnetic alloys and conducting but nonmagnetic materials (such as carbon/graphene) is a practical approach toward EMI SE. This review is not exhaustive, although it is comprehensive and aimed at all materials for EMI SE especially graphene-based polymeric composites. It encompasses multifunctional and functional structural EMI shields. These materials comprise polymers, carbons, ceramics, metals, cement composites/nanocomposites, and hybrids. The accessibility of abundant categories of carbon-based materials in their microscale, nanoscale, and quantum forms as EMI shields as polymer- carbon, cement-carbon, ceramic-carbon, metal-carbon, and their hybrids, makes them receive much attention, as a result of their unique amalgamation of electrical, magnetic, dielectric, thermal, and/or mechanical properties. Herewith, we have discussed the principles of EMI shields along with their design and state of the art basis and material architecture along with the drawbacks in research on EMI shields.

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