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Tailored distribution of nanoparticles in bi-phasic polymeric blends as emerging materials for suppressing electromagnetic radiation: challenges and prospects

机译:在双相聚合物中的纳米颗粒的定制分布作为用于抑制电磁辐射的新出现材料:挑战和前景

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摘要

Regardless of its location, our electronic equipment does not always escape the threats of electromagnetic interference (EMI). Unrestrained radio and microwave radiation from communication devices, broadcasting stations, power lines and other electric equipment constantly bombards us and our precise circuitry equipment. Although its effects on human beings have not yet been directly demonstrated, our electronic gadgets are not that fortunate. A plethora of research work has already been published in the search for a perfect shielding material. Studies in the last decade reveal that dielectric ceramics, magnetic oxides/ferrites/particles, semiconductors, metal particles/foams, intrinsically conducting polymers, conducting carbon black/fibers/nanotubes and other carbon derivatives such as graphene etc. have been widely researched. The particles are either embedded in a wax medium or in a thermoplastic matrix to design an effective shield. To this end, polymer-based nanocomposites have been much discussed owing to their technology-matching properties, light weight, ease of fabrication and adaption, lack of corrosion, and design flexibility. However, the high dosage of nanofillers needed to meet the requirements of an effective shield mars their utility in many respects. Although bi-phasic polymer blends have been researched from different perspectives, utilizing them as a template for microwave shielding is currently drawing enormous interest compared with single-polymer-based nanocomposites. This review highlights the stepwise advancement of bi-phasic polymer blends towards EMI shielding applications. We in this manner endeavor to provide a necessary overview and point out the direction in which future research will keep on thriving as this new class of material emerges as an effective EMI shield.
机译:无论其位置如何,我们的电子设备并不总是逃避电磁干扰(EMI)的威胁。来自通信设备的无限制和微波辐射,广播电台,电力线和其他电气设备不断轰击我们和我们的精确电路设备。虽然尚未直接证明对人类的影响,但我们的电子小工具并不是幸运的。在寻找完美的屏蔽材料中已经发表了一种研究工作。过去十年的研究表明,介电陶瓷,磁氧化物/铁氧烷/颗粒,半导体,金属颗粒/泡沫,本质上导电聚合物,导电炭黑/纤维/纳米管和其他碳衍生物如石墨烯等。将颗粒嵌入蜡介质中或在热塑性基质中以设计有效护罩。为此,由于其技术匹配的性能,重量轻,制造和适应,腐蚀,腐蚀,缺乏腐蚀,并且缺乏腐蚀和设计灵活性,已经讨论了基于聚合物的纳米复合材料。然而,纳米填充物的高剂量需要满足有效盾牌的要求在许多方面的效用。尽管已经从不同的观点研究了双阶段聚合物共混物,但利用它们作为微波屏蔽的模板,与基于单聚合物基纳米复合材料相比,目前具有巨大的兴趣。本综述突出了双阶段聚合物共混物对EMI屏蔽应用的逐步进步。我们以这种方式努力提供必要的概述并指出未来研究将继续繁荣的方向,因为这类新的材料作为一种有效的EMI盾牌。

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