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Electrochemical activation of carbon cloth in aqueous inorganic salt solution for superior capacitive performance

机译:电化学活化的碳布无机盐水溶液为优越电容性能

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摘要

Carbon cloth (CC) is an inexpensive and highly conductive textile with excellent mechanical flexibility and strength; it holds great promise as an electrode material for flexible supercapacitors. However, pristine CC has such a low surface area and poor electrochemical activity that the energy storage capability is usually very poor. Herein, we report a green method, two-step electrochemical activation in an aqueous solution of inorganic salts, to significantly enhance the capacitance of CC for supercapacitor application. Microcracks, exfoliated carbon fiber shells, and oxygen-containing functional groups (OFGs) were introduced onto the surface of the carbon filament. This resulted in an enhancement of over two orders of magnitude in capacitance compared to that of the bare CC electrode, reaching up to a maximum areal capacitance of 505.5 mF cm(-2) at the current density of 6 mA cm(-2) in aqueous H2SO4 electrolyte. Electrochemical reduction of CC electrodes led to the removal of most electrochemically unstable surface OFGs, resulting in superior charging/discharging rate capability and excellent cycling stability. Although the activated CC electrode contained a high-level of surface oxygen functional groups (similar to 15 at %), it still exhibited a remarkable charging-discharging rate capability, retaining similar to 88% of the capacitance when the charging rate increased from 6 to 48 mA cm(-2). Moreover, the activated CC electrode exhibited excellent cycling stability with similar to 97% capacitance remaining after 10 000 cycles at a current density of 24 mA cm(-2). A symmetrical supercapacitor based on the activated CC exhibited an ideal capacitive behavior and fast charge-discharge properties. Such a simple, environment-friendly, and cost-effective strategy to activate CC shows great potential in the fabrication of high-performance flexible supercapacitors.
机译:碳布(CC)是最廉价的和高度导电的纺织机械灵活性和力量;作为电极材料灵活超级电容器。低表面积和可怜的电化学活动的能量存储能力通常很差。方法,在一个两步电化学活化无机盐水溶液,显著提高CC的电容超级电容器的应用程序。碳纤维外壳脱落,含氧官能团(一些小)介绍了碳的表面上灯丝。相比,电容两个数量级裸露的CC电极,达到最多面积505.5厘米(2)曼氏金融的电容电流密度的马6厘米(2)水硫酸电解液。CC电极导致的不稳定的表面一些小,电化学原理得到了更好的充电/放电率能力和良好的循环稳定性。虽然激活CC电极包含一个高层的表面氧官能团(类似于15日在%),它仍然表现出一个非凡的充电放电率的能力,保留类似电容时的88%充电率从6增加到48个厘米(2)。表现出良好的循环稳定性类似于电容剩余10 000年的97%周期的电流密度马24厘米(2)。对称超级电容器基于激活CC理想电容行为和展出快速充放电特性。环保和具有成本效益的策略激活CC中显示了巨大的潜力制造高性能的灵活的超级电容器。

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