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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Electrically conductive transparent films based on nylon 6 membranes and single-walled carbon nanotubes
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Electrically conductive transparent films based on nylon 6 membranes and single-walled carbon nanotubes

机译:基于尼龙6膜和单壁碳纳米管的导电透明薄膜

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摘要

Electrically conductive transparent films were fabricated from single-walled carbon nanotubes (SWCNTs) and electrospun nylon 6 membranes, and then the films were dipped in epoxy resins. The nylon 6 nanofibers aided the formation of two-dimensional networks within the SWCNTs and maintained a uniform dispersion of the nanotubes. The electrical conductivity of the membranes increased after they were dipped in a high concentration SWCNT dispersion. The electrically conductive films that were prepared using the 0.02 wt.% SWCNT dispersion exhibited an electrical percolation threshold. The transmittance increased after an epoxy resin was incorporated into the electrically conductive transparent film because the epoxy resin disturbed the optical scattering of the film. After the nylon 6 nanofibrous membrane that was obtained through electro-spinning with the 20 wt.% polymer solution was dipped in the 0.02 wt.% SWCNT dispersion, the membrane had a sheet resistance = 9.5 × 10 ~2 Ω/□. The transmittance of the epoxy resin-impregnated film was 77.4% (sheet resistance = 2.1 × 10~3 Ω/□).
机译:由单壁碳纳米管(SWCNT)和电纺尼龙6膜制成导电透明膜,然后将其浸入环氧树脂中。尼龙6纳米纤维有助于在SWCNT中形成二维网络,并保持纳米管的均匀分散。将膜浸入高浓度SWCNT分散液后,其电导率增加。使用0.02重量%的SWCNT分散体制备的导电膜表现出电渗透阈值。将环氧树脂掺入导电透明膜后,透光率增加,这是因为环氧树脂干扰了该膜的光散射。将通过与20 wt。%的聚合物溶液进行电纺丝而获得的尼龙6纳米纤维膜浸入0.02 wt。%的SWCNT分散液中后,该膜的薄层电阻= 9.5×10〜2Ω/□。环氧树脂浸渍膜的透射率为77.4%(薄层电阻= 2.1×10〜3Ω/□)。

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