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Carbonized cotton fabric in-situ electrodeposition polypyrrole as high-performance flexible electrode for wearable supercapacitor

机译:碳化棉织物原位电沉积滤吡咯作为可穿戴超级电容器的高性能柔性电极

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摘要

A polypyrrole/carbonized cotton fabric (PPy/CCF) flexible bind-free electrode was firstly created by simple carbonization and in-situ electrodeposition method for supercapacitors. The PPy/CCF-1:2 not only exhibits a high specific capacitance of 3596 mF cm(-2) at a current density of 2 mA cm(-2), which is almost 9 times higher than the pristine CCF (420 mF cm(-2)), but also shows good rate capability and high stability with 96.5% capacitance retention after 4000 cycles. The excellent electrochemical properties can be attributed to CCF substrate with a hierarchical 3D porous structure, which can provide conductive pathways for fast electron transfer and large accessible area for PPy loading. Meanwhile, PPy with hornlike microstructure can shorten ion diffusion paths, and ensure adequate contact area between the electrode and the electrolyte, leading to an dramatical increase in the specific capacitance and fast charge/discharge capability of the hybrid electrodes. In addition, the assembled flexible supercapacitor possesses a high volumetric energy density of 1.18 mWh cm(-3) at power density of 17 mW cm(-3), expressing no any decline in the capacitance under different bending situations. This device can be easily sewn into a garment for powering an electronic watch, with the low-cost, lightweight and easy fabrication features, which will be considerate as a promising candidate for wearable energy storage device. (C) 2018 Elsevier Ltd. All rights reserved.
机译:首先通过简单的碳化和原位电沉积方法为超级电容器的碳化和原位电沉积方法创造聚吡咯/碳化棉织物(PPY / CCF)柔性无粘合剂。 PPY / CCF-1:2不仅在2 mA cm(-2)的电流密度下表现出3596mF cm(-2)的高比电容,这几乎高于Pristine CCF(420mF cm (-2)),但也显示出良好的速率能力和高稳定性,在4000个循环后的电容保留96.5%。优异的电化学特性可以归因于具有层级3D多孔结构的CCF衬底,其可以为快速电子传递和用于PPY负载的大可接近区域提供导电途径。同时,具有角状微观结构的PPY可以缩短离子扩散路径,并确保电极和电解质之间的足够接触面积,从而导致混合电极的特定电容和快速充电/放电能力的显着增加。此外,组装的柔性超级电容器在功率密度为17mW cm(-3)的功率密度具有1.18mwh cm(-3)的高容量能量密度,在不同弯曲情况下表达电容中的任何下降。该装置可以容易地缝制成用于供电电子表的衣服,具有低成本,轻质和易于制造的特征,这将被视为可穿戴能量存储装置的有希望的候选者。 (c)2018年elestvier有限公司保留所有权利。

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