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Polymeric Films with Electric and Magnetic Anisotropy Due to Magnetically Assembled Functional Nanofibers

机译:由于磁性组装的功能纳米纤维而具有电和磁各向异性的聚合物薄膜

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摘要

We demonstrate the fabrication of free-standing polymeric nanocomposite films, which present magnetic and electrically conductive anisotropic properties. Magnetically function- alrzed carbon nanofibers are dispersed in a polymeric solution and, upon casting under a weak external magnetic field, are easily oriented and permanently assembled in a head-to-tail orientation in the polymer film during solvent evaporation. Magnetic and conductive property studies reveal that the resulting films have a high degree of anisotropy in both cases, thus allowing their use in functional complex devices. As a proof of concept, we demonstrate the potential application of these films as flexible THz polarizers. The detailed study shows that very high attenuation values per unit film thickness and fiber mass concentration are achieved, paving thus the way for cost-effective fabrication of substrate-free systems that have advantage over conventional devices realized so far.
机译:我们演示了独立的聚合物纳米复合材料薄膜的制造,该薄膜具有磁性和导电各向异性。磁性功能化的碳纳米纤维分散在聚合物溶液中,在弱外部磁场下浇铸后,易于定向,并在溶剂蒸发过程中以头尾方向永久性地组装在聚合物膜中。磁性和导电性能研究表明,所得膜在两种情况下均具有高度的各向异性,因此可以在功能复杂的器件中使用。作为概念验证,我们演示了这些膜作为柔性THz偏振片的潜在应用。详细的研究表明,可以实现很高的每单位膜厚和纤维质量浓度的衰减值,从而为经济高效地制造无基材系统铺平了道路,该系统比迄今实现的常规设备更具优势。

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