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Embedded PEDOT:PSS/AgNFs network flexible transparent electrode for solid-state supercapacitor

机译:嵌入式PEDOT:PSS / AGNFS网络柔性透明电极用于固态超级电容器

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Energy storage devices that offer high energy storage capacity along with high electro-optical and mechanical performance is still a great challenge as a power source for transparent electronic gadgets. Here, we report the fabrication of an ultra-flexible, lightweight embedded PEDOT: PSS/AgNFs/NOA 63 hybrid transparent supercapacitor electrode (HTSE) film by using a peel-off transfer process technique. The HTSE film shows a good electro-optical performance, the sheet resistance of Rs similar to 2.12 Omega/sq at 84.65% transmittance, along with excellent mechanical bending and flexibility characteristics. The HTSE film shows a negligible change in resistance, only a similar to 1% increase in resistance is observed after 10,000 bending cycles at a bending radius of 2.0 mm. The HTSE film also exhibits good electrochemical performance with an areal capacitance of 3.64 mF/cm(2) at 84.65% transmittance. The fabricated supercapacitor device also exhibits excellent mechanical flexibility, only 1.5% decrease in areal capacitance after 5000 repeated bending cycles at 2.0 mm bending radius. Owing to the high electro-optical, electrochemical and mechanical properties of the HTSE film, the fabricated solid-state supercapacitor device shows high transparency, good electrochemical performance, and long cyclic stability. The HTSE film will be a potential electrode for future transparent portable energy power source, and other flexible transparent electronic devices, an alternative to ITO.
机译:能量存储设备提供高能量存储容量以及高电光和机械性能仍然是作为透明电子小工具的电源的巨大挑战。在这里,我们通过使用剥离转移过程技术报告了超柔性,轻质嵌入式PEDOT:PSS / AGNFS / NOA 63混合透明超级电容器电极(HTSE)膜的制造。 HTSE薄膜显示出良好的电光性能,RS的薄层电阻与2.12ω/ SQ相似,透射率为84.65%,以及出色的机械弯曲和柔韧性特性。 HTSE膜显示出可忽略的抗性变化,在弯曲半径为2.0mm的10,000弯曲循环后,仅观察到相似的抗性增加。 HTSE薄膜还表现出良好的电化学性能,面积电容为3.64mF / cm(2),透射率为84.65%。制造的超级电容器装置还具有出色的机械柔性,仅具有优异的机械柔性,仅具有优异的机械柔性。在2.0mm弯曲半径为2.0mm重复弯曲循环后,面积电容减少1.5%。由于HTSE薄膜的高电光,电化学和机械性能,制造的固态超级电容器装置具有高透明度,良好的电化学性能和长循环稳定性。 HTSE薄膜将是未来透明便携式能源电源和其他柔性透明电子设备的潜在电极,是ITO的替代品。

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