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Biomass-derived three-dimensional carbon framework for a flexible fibrous supercapacitor and its application as a wearable smart textile

机译:生物质衍生的三维碳框架,用于柔性纤维超级电容器及其作为可穿戴智能纺织品的应用

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High electrochemical performance and mechanical reliability are two important properties of the flexible fibrous supercapacitors (FFSCs) used in portable and wearable electronics. Herein, we introduce high-performance and stable FFSCs produced using Tetrapanax papyrifer with a honeycomb-like structure (the key material) acting as a frame for an activated carbon (AC) coating. The honeycomb-like structure facilitates penetration of electrolytes and electron transport in the AC particles. This reduces the contact resistance between the AC and current collector, thereby enhancing the electrochemical energy storage. The FFSCs possess long length and area specific capacitances of 20.8 mF cm ~(?1) and 83.9 mF cm ~(?2) , respectively. In addition, the fabricated FFSCs display a maximum length (area) energy density of 3.98 μW h cm ~(?1) (16.1 μW h cm ~(?2) ) at a power density of 0.07 mW cm ~(?1) (1.99 mW cm ~(?2) ) and attain an excellent capacitance retention of 91% over 10?000 cycles. Moreover, the supercapacitors exhibit excellent mechanical flexibility with minor increase in capacitance upon bending. Three flexible fibrous supercapacitors in series power a red light-emitting diode, demonstrating the potential application of the flexible fibrous supercapacitors in smart textiles.
机译:高电化学性能和机械可靠性是便携式和可穿戴电子产品中使用的柔性纤维超级电容器(FFSC)的两个重要特性。在此,我们引入了使用Tetrapanax Papyrifer产生的高性能和稳定的FFSC,其具有蜂窝状的结构(关键材料)作为用于活性炭(AC)涂层的框架。蜂窝状的结构有助于电解质和电子传输在AC颗粒中的渗透。这降低了AC和集电器之间的接触电阻,从而增强了电化学能量存储。 FFSCs分别具有20.8mF cm〜(α1)和83.9mF cm〜(Δ2)的长度和面积特异性电容。此外,制造的FFSCs显示器的最大长度(面积)能量密度为3.98μWHcm〜(α1)(16.1μWhcm〜(Δ2)),功率密度为0.07mw cm〜(α1)( 1.99mw cm〜(Δ2)),并达到91%超过10Ω循环的优异电容保留。此外,超级电容器在弯曲时表现出优异的机械灵活性,在弯曲时轻微增加电容。三种柔性纤维超级电容器串联电源红色发光二极管,展示柔性纤维超级电容器在智能纺织品中的潜在应用。

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