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In situ vitamin C reduction of graphene oxide for preparing flexible TPU nanocomposites with high dielectric permittivity and low dielectric loss

机译:原位维生素C的石墨烯C减少用于制备具有高介电常数和低介电损耗的柔性TPU纳米复合材料

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Flexible thermoplastic polyurethane/reduced graphene oxide (TPU/rGO) nanocomposite sheets were prepared via a combination of solvent-exchange and in situ vitamin C reduction. Raman, Fourier transform infrared and Xray photoelectron spectroscopy suggest a successful reduction of the GO by vitamin C, which largely enhances the interfacial polarization ability of the resultant rGO layers. Hence, the TPU/rGO sheets exhibit much higher dielectric permittivity (epsilon') than corresponding TPU/GO sheet. X-ray diffraction patterns, transmission electron microscopy image and predicated rGO layer thickness all indicate good exfoliation and dispersion of the rGO layers in the TPU matrix. Rheological tests demonstrate that a percolation structure is formed in the nano composite with 0.75 vol% rGO. The enhanced interfacial polarization ability and possible formation of micro capacitor network of the rGO layers result in high epsilon' (151 at 1 kHz) for the nanocomposite sample with only 0.75 vol% rGO. Meanwhile, its dielectric loss remains lower than 1 at 1 kHz, which can be attributed to weakened tunnel current between two adjacent rGO layers by the insulating TPU barriers in between.
机译:通过溶剂交换和原位维生素C,通过组合制备柔性热塑性聚氨酯/还原氧化物(TPU / RGO)纳米复合材料片。拉曼,傅里叶变换红外线和X射线光电子体光谱表明维生素C的成功减少,这主要提高了所得rgo层的界面偏振能力。因此,TPU / RGO板材比相应的TPU /去纸表现出更高的介电介电常数(epsilon')。 X射线衍射图案,透射电子显微镜图像和预测的RGO层厚度都表示TPU基质中RGO层的良好剥离和分散。流变试验表明,在纳米复合材料中形成渗透结构,含有0.75体积%的rgo。纳米复合材料样品的增强型界面偏振能力和RGO层的微电容器网络的微电容器网络的形成为高ε(151,1kHz),仅为0.75体积%rgo。同时,其介电损耗保持在1kHz的1 kHz,其可归因于两个相邻的RGO层之间的弱化隧道电流通过绝缘TPU屏障之间。

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