首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Experimental realization of simultaneous negative permittivity and permeability in Ag/Y3Fe5O_(12) random composites
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Experimental realization of simultaneous negative permittivity and permeability in Ag/Y3Fe5O_(12) random composites

机译:Ag / Y3Fe5O_(12)无规复合材料同时负介电常数和磁导率的实验实现

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摘要

Ag/Y3Fe5O_(12) random composites of silver particles randomly hosted in porous Y3Fe5O_(12) were prepared using a facile impregnation-calcination process. With the increase of silver content, the silver particles interconnected with each other near the percolation threshold, leading to the formation of electrical conductive silver networks. The plasma oscillation of delocalized electrons in interconnected silver particles leads to the negative permittivity. The negative permittivity behaviour was analyzed using the Drude model and equivalent circuit models. Meanwhile, the diamagnetic response of silver networks combined with the magnetic resonance of Y3Fe5O_(12) results in the negative permeability. That is to say, simultaneous negative permittivity and negative permeability were realized in the Ag/Y3Fe5O_(12) random composites. Hopefully, tunable double negative property could be realized by adjusting the microstructure and composition of the composites. External DC magnetic field could also be applied to control the electromagnetic properties of the composites.
机译:使用简便的浸渍-煅烧工艺制备了随机存在于多孔Y3Fe5O_(12)中的银颗粒的Ag / Y3Fe5O_(12)无规复合物。随着银含量的增加,银颗粒在渗滤阈值附近相互连接,从而形成导电银网络。互连的银粒子中离域电子的等离子体振荡导致负介电常数。使用Drude模型和等效电路模型分析了负介电常数行为。同时,银网络的抗磁响应结合Y3Fe5O_(12)的磁共振导致负磁导率。也就是说,在Ag / Y3Fe5O_(12)无规复合材料中同时实现了负介电常数和负磁导率。希望通过调节复合材料的微观结构和组成可以实现可调节的双重负性。外部直流磁场也可用于控制复合材料的电磁性能。

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