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Flexible Transparent Metal/Polymer Composite Materials Based on Optical Resonant Laminate Structures

机译:基于光学谐振层压结构的柔性透明金属/聚合物复合材料

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摘要

Suitable design of periodic metal/polymer composite materials is shown to facilitate resonant tunneling of light at absorbing wavelengths and to provide a means to significantly reduce optical absorption losses in polymer-based metallodielectric composite structures. The conditions for resonant tunneling are established based on the concept of "photonic band edge alignment" in ID-periodic systems. For the particular case of a four-layer gold/polystyrene laminate structure, it is shown that the matching of the lower band edge of the ID-periodic structure with the plasma frequency of the metal component facilitates th structure with the plasma frequency of the metal component facilitates the increase of optical transmission by about 500% as compared to monolithic film structures of equal total thickness. The effect of sheet thickness on the optical properties of thin metal films is determined and shown to be an important prerequisite for the reliable prediction of resonant metallodielectric structures. The resonant ID-periodic metal/polymer heterostructures are shown to retain the flexural stability of the polymer matrix and thus could find application as flexible transparent conductors in areas such as "plastic electronics".
机译:示出了周期性金属/聚合物复合材料的适当设计,以促进光在吸收波长处的共振隧穿,并提供了显着降低基于聚合物的金属介电复合结构中的光吸收损耗的手段。基于ID周期系统中的“光子带边缘对准”的概念来建立谐振隧穿的条件。对于四层金/聚苯乙烯层压板结构的特殊情况,表明ID周期结构的下带边缘与金属组分的等离子体频率的匹配促进了结构与金属的等离子体频率的匹配与相等的总厚度的单片膜结构相比,该组分有助于将光学透射率提高约500%。确定了薄板厚度对金属薄膜光学性能的影响,并证明这是可靠预测谐振金属电介质结构的重要前提。共振ID周期的金属/聚合物异质结构显示出保持聚合物基体的挠曲稳定性,因此可以在诸如“塑料电子”之类的领域中用作柔性透明导体。

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