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Robust electromagnetic absorption by graphene/polymer heterostructures

机译:石墨烯/聚合物异质结构的强大电磁吸收

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Polymer/graphene heterostructures present good shielding efficiency against GHz electromagnetic perturbations. Theory and experiments demonstrate that there is an optimum number of graphene planes, separated by thin polymer spacers, leading to maximum absorption for millimeter waves Batrakov et al (2014 Sci. Rep. 4 7191). Here, electrodynamics of ideal polymer/graphene multilayered material is first approached with a well-adapted continued-fraction formalism. In a second stage, rigorous coupled wave analysis is used to account for the presence of defects in graphene that are typical of samples produced by chemical vapor deposition, namely microscopic holes, microscopic dots (embryos of a second layer) and grain boundaries. It is shown that the optimum absorbance of graphene/polymer multilayers does not weaken to the first order in defect concentration. This finding testifies to the robustness of the shielding efficiency of the proposed absorption device.
机译:聚合物/石墨烯异质结构对GHz电磁干扰表现出良好的屏蔽效率。理论和实验表明,存在最佳数量的石墨烯平面,由薄的聚合物垫片隔开,从而导致毫米波的最大吸收Batrakov等人(2014 Sci。Rep。4 7191)。在此,首先以一种非常适合的连续分数形式来研究理想的聚合物/石墨烯多层材料的电动力学。在第二阶段,使用严格的耦合波分析来解释石墨烯中缺陷的存在,这些缺陷是化学气相沉积产生的样品的典型特征,即微观孔,微观点(第二层的胚)和晶界。结果表明,石墨烯/聚合物多层的最佳吸收率并没有减弱到缺陷浓度的一级。该发现证明了所提出的吸收装置的屏蔽效率的鲁棒性。

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