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Tunable negative permittivity behavior and conductor-insulator transition in dual composites prepared by selective reduction reaction

机译:选择性还原反应制备的双复合材料的可调负介电常数行为和导体-绝缘体转变

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摘要

We use a selective reduction reaction to fabricate a new kind of dual composite, which has a \u22composite-within-a-composite\u22 structure. Based on the different reduction behavior of Fe2O3, an Fe-rich structure (Fe-Fe3O4-Al2O3) is formed in an Al-rich structure (FeAl2O4-Al2O3). The Fe-rich structure can bring down the concentration of free electrons to reduce the energy loss, without losing its metallic behaviour at the same time. Near the percolation threshold, a conductor-insulator transition appears and the dual composites show totally different electromagnetic responses, which can be well explained by effective medium theory. By controlling the parameters of the selective reduction process, we can get a tunable negative permittivity, which implies the ability to continuously change their electromagnetic properties.
机译:我们使用选择性还原反应来制造一种新型的双重复合材料,该复合材料具有复合材料。基于Fe 2 O 3的不同还原行为,在富Al结构(FeAl 2 O 4 -Al 2 O 3)中形成富Fe结构(Fe-Fe 3 O 4 -Al 2 O 3)。富铁结构可以降低自由电子的浓度以减少能量损失,而不会同时失去其金属性能。在渗流阈值附近,出现了导体-绝缘体的转变,双重复合材料表现出完全不同的电磁响应,这可以用有效的介质理论很好地解释。通过控制选择性还原过程的参数,我们可以获得可调的负介电常数,这意味着可以连续改变其电磁性能。

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