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首页> 外文期刊>ACS nano >Stretchable Wire-Shaped Asymmetric Supercapacitors Based on Pristine and MnO2 Coated Carbon Nanotube Fibers
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Stretchable Wire-Shaped Asymmetric Supercapacitors Based on Pristine and MnO2 Coated Carbon Nanotube Fibers

机译:基于原始和MnO2涂层的碳纳米管纤维的可拉伸线状不对称超级电容器

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摘要

While the emerging wire-shaped supercapadtors (WSS) have been demonstrated as promising energy storage devices to be implemented in smart textiles, challenges in achieving the combination of both high mechanical stretchability and excellent electrochemical performance still exist. Here, an asymmetric configuration is applied to the MISS, extending the potential window from 0.8 to 1.5V, achieving tripled energy density and doubled power density compared to its asymmetric counterpart while accomplishing stretchability of up to 100% through the prestrainning-then-buckling approach. The stretchable asymmetric WSS constituted of MnO2/CNT hybrid fiber positive electrode, aerogel CNT fiber negative electrode and KOH-PVA electrolyte possesses a high specific capacitance of around 157.53 mu F cm(-1) at 50 mV s(-1) and a high energy density varying from 17.26 to 46.59 nWh cm(-1) with the corresponding power density changing from 7.63 to 61.55 mu W cm(-1). Remarkably, a cyclic tensile strain of up to 100% exerts negligible effects on the electrochemical performance of the stretchable asymmetric WSS. Moreover, after 10 000 galvanostatic charge-discharge cycles, the specific capacitance retains over 99%, demonstrating a long cyclic stability.
机译:尽管新兴的线形超级电容器(WSS)已被证明是有希望在智能纺织品中实现的储能设备,但在实现高机械拉伸性和出色的电化学性能的结合方面仍然存在挑战。在此,MISS采用了一种非对称配置,将电位窗口从0.8V扩展到1.5V,与非对称结构相比,其能量密度增加了三倍,功率密度增加了一倍,同时通过预应变然后屈曲的方法实现了高达100%的可拉伸性。由MnO2 / CNT杂化纤维正极,气凝胶CNT纤维负极和KOH-PVA电解质组成的可拉伸不对称WSS在50 mV s(-1)时具有约157.53μFcm(-1)的高比电容和能量密度从17.26到46.59 nWh cm(-1)不等,相应的功率密度从7.63到61.55 mu W cm(-1)改变。值得注意的是,高达100%的循环拉伸应变对可拉伸不对称WSS的电化学性能影响可忽略不计。此外,在经过10000次恒电流充放电循环后,比电容保留了99%以上,这表明其具有较长的循环稳定性。

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