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Flexible Wire-Shaped Supercapacitors in Parallel Double Helix Configuration with Stable Electrochemical Properties under Static/Dynamic Bending

机译:静态/动态弯曲下具有稳定电化学性能的平行双螺旋配置的柔性线形超级电容器

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摘要

Wire-shaped flexible supercapacitors (SCs) have aroused much attention due to their small size, light weight, high flexibility, and deformability. However, the previously reported wire-shaped SCs usually involve complex assembly processes, encounter potential structural instabilities, and the influence of dynamic bending on the electrochemical stability of wire-shaped SCs is also not clear. Here, a parallel double helix wire-shaped supercapacitor (PDWS) protocol has been developed with two symmetric titanium@MnO2 fiber electrodes winded on a flexible nylon fiber by a simple and reliable process. The PDWSs show an operate voltage of 0.8 V, a high capacitance of 15.6 mF cm(-2) and an energy density of 1.4 mu Wh cm(-2). Due to rational structure design, the PDWSs demonstrate excellent mechanical and electrochemical stability under both static and dynamic deformations. Over 3500 bending cycles, 88.0% of the initial capacitance can still be retained. In terms of dynamic bending, it is found that the cyclic voltammetry curves show periodically fluctuations simultaneously with the bending frequency and the intensity of fluctuation increases with higher bending frequency, while the dynamic capacitance is almost not affected. With extraordinary mechanical flexibility and excellent electrochemical stability, the high performance PDWS is considered to be a promising power source for wearable electronics.
机译:线形柔性超级电容器(SC)由于其体积小,重量轻,柔性高和可变形性而备受关注。然而,先前报道的线状SC通常涉及复杂的组装过程,遇到潜在的结构不稳定性,并且动态弯曲对线状SC的电化学稳定性的影响也不清楚。在这里,已经开发出一种平行双螺旋线形超级电容器(PDWS)协议,其中两个对称的钛@ MnO2纤维电极通过简单而可靠的方法缠绕在柔性尼龙纤维上。 PDWS的工作电压为0.8 V,高电容为15.6 mF cm(-2),能量密度为1.4 mu Wh cm(-2)。由于合理的结构设计,PDWS在静态和动态变形下均表现出出色的机械和电化学稳定性。在3500个弯曲循环中,仍可保留88.0%的初始电容。在动态弯曲方面,发现循环伏安曲线与弯曲频率同时显示周期性波动,并且随着较高的弯曲频率波动强度增加,而动态电容几乎不受影响。凭借出色的机械柔韧性和出色的电化学稳定性,高性能PDWS被认为是可穿戴电子设备的有前途的电源。

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