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In-situ sol-gel synthesis of zirconia networks in flexible and conductive composite films

机译:原位溶胶 - 凝胶合成柔性导电复合膜中的氧化锆网络

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摘要

The conductive and stretchable films with improved hardness are suitable for the fabrication of flexible electronic devices. This study describes the sol-gel technique to prepare a novel conductive and flexible film consisting of epoxidized natural rubber (ENR), doped polyaniline (PD) and zirconia. The zirconia networks were directly synthesized in-situ in ENR/PD solution and flexible conductive composite film with improved hardness was obtained. The morphology study revealed the size of PD decreased significantly from 77.89 +/- 43.95 nm to 4.32 +/- 1.13 nm and highest electrical conductivity of 1.9 x 10(-3) S/cm was achieved with 10 wt.% percolation threshold of zirconia precursor. The binding energy of Zr3d(5/2) and Zr3d(3/2) decreased, suggesting that zirconia was converted to the lower oxidation state. Furthermore, the shape of PD changed from spherical to rod-like structure with root mean square value of 2 nm, while the hardness and reduced modulus improved to 1.72 MPa and 36.7 MPa, respectively.
机译:具有改善硬度的导电和可拉伸薄膜适用于柔性电子器件的制造。该研究描述了制备由环氧化天然橡胶(ENR),掺杂的聚苯胺(Pd)和氧化锆组成的新型导电和柔性膜的溶胶 - 凝胶技术。在ENR / Pd溶液中直接合成氧化锆网络,并获得具有改善硬度的柔性导电复合膜。形态学研究显示Pd的尺寸从77.89 +/- 43.95nm显着降低至4.32 +/- 1.13nm,并且通过10重量%的重量达到1.9×10(-3)S / cm的最高电导率。%氧化锆的渗透阈值%前体。 Zr3D(5/2)和Zr3D(3/2)的结合能降低,表明氧化锆转化为低氧化态。此外,PD的形状从球形变为杆状结构,具有2nm的根均值,而硬度和减少的模量分别改善为1.72MPa和36.7MPa。

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