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Recent Advances in Conjugated Polymer-Based Microwave Absorbing Materials

机译:共轭聚合物基微波吸收材料的最新进展

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摘要

Microwave absorbing materials (MAMs) are paving the way for exciting applications in electromagnetic (EM) pollution precaution and national defense security, as they offer an advanced alternative to conventional reflection principles to fundamentally eliminate the EM waves. Conjugated polymer (CP)-based composites appear as a promising kind of MAM with the desirable features of low density and high performance. In this review, we introduce the theory of microwave absorption and summarize recent advances in the fabrication of CP-based MAMs, including rational design of the microstructure of pure conjugated polymers and tunable chemical integration with magnetic ferrites, magnetic metals, transition metal oxides, and carbon materials. The key point of enhancing microwave absorption in CP-based MAMs is to regulate their EM properties, improve matching of characteristic impedance, and create diversified loss mechanisms. The examples presented in this review will provide new insights into the design and preparation of CP-based composites that can satisfy the high demands of the oncoming generation of MAMs.
机译:微波吸收材料(MAM)为电磁(EM)污染预防和国防安全领域中令人兴奋的应用铺平了道路,因为它们为传统的反射原理提供了一种先进的替代方法,可以从根本上消除EM波。基于共轭聚合物(CP)的复合材料似乎是一种有前途的MAM,具有低密度和高性能的理想功能。在这篇综述中,我们介绍了微波吸收的原理,并总结了基于CP的MAM制备的最新进展,包括合理设计纯共轭聚合物的微观结构以及与磁性铁氧体,磁性金属,过渡金属氧化物和铝的可调谐化学结合。碳材料。在基于CP的MAM中增强微波吸收的关键在于调节其EM特性,改善特征阻抗的匹配以及创建多种损耗机制。这篇综述中的例子将提供对基于CP的复合材料的设计和制备的新见解,这些复合材料可以满足即将到来的MAM的高要求。

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