Orasugh Jonathan Tersur, Ray Suprakas Sinha
Department of Chemical Sciences, University of Johannesburg, Doornfontein, 2028Johannesburg, South Africa.
Centre for Nanostructures and Advanced Materials, DSI-CSIR Nanotechnology Innovation Centre, Council for Scientific and Industrial Research, Pretoria0001, South Africa.
ACS Omega. 2023 Feb 22;8(9):8134-8158. doi: 10.1021/acsomega.2c05815. eCollection 2023 Mar 7.
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.
由于电子和电信技术的快速发展,电磁干扰(EMI)屏蔽效能(SE)系统受到了研究人员的广泛关注,这在我们现代社会中是一个令人担忧的问题。这种辐射会损害电磁设备的性能,并可能对动物/人类健康产生有害影响。磁性合金与导电但非磁性材料(如碳/石墨烯)的和谐利用是实现EMI SE的一种实用方法。尽管本综述全面且针对所有用于EMI SE的材料,尤其是基于石墨烯的聚合物复合材料,但并非详尽无遗。它涵盖了多功能和功能性结构EMI屏蔽。这些材料包括聚合物、碳、陶瓷、金属、水泥复合材料/纳米复合材料以及混合物。碳基材料以聚合物 - 碳、水泥 - 碳、陶瓷 - 碳、金属 - 碳及其混合物等形式作为EMI屏蔽,以其微观、纳米和量子形式存在的丰富种类使其备受关注,这是由于它们独特地融合了电、磁、介电、热和/或机械性能。在此,我们讨论了EMI屏蔽的原理、其设计和现有技术基础、材料结构以及EMI屏蔽研究中的缺点。