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Eco‐Friendly and High Performance Supercapacitors for Elevated Temperature Applications Using Recycled Tea Leaves

机译:使用再生茶叶在高温环境下使用的环保型高性能超级电容器

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摘要

Used tea leaves are utilized for preparation of carbon with high surface area and electrochemical properties. Surface area and pore size of tea leaves derived carbon are controlled by varying the amount of KOH as activating agent. The maximum surface area of 2532 m2 g−1 is observed, which is much higher than unactivated tea leaves (3.6 m2 g−1). It is observed that the size of the electrolyte ions has a profound effect on the energy storage capacity. The maximum specific capacitance of 292 F g−1 is observed in 3 m KOH electrolyte with outstanding cyclic stability, while the lowest specific capacitance of 246 F g−1 is obtained in 3 m LiOH electrolyte at 2 mV s−1. The tea leaves derived electrode shows almost 100% capacitance retention up to 5000 cycles of study. The symmetrical supercapacitor device shows a maximum specific capacitance of 0.64 F cm−2 at 1 mA cm−2 and about 95% of specific capacitance is retained after increasing current density to 12 mA cm−2, confirming the high rate stability of the device. An improvement over 35% in the charge storage capacity is seen when increasing device temperature from 10 to 80 °C. The study suggests that used tea leaves can be used for the fabrication of environment friendly high performance supercapacitor devices at a low cost.
机译:用过的茶叶用于制备具有高表面积和电化学性质的碳。通过改变作为活化剂的KOH的量来控制茶叶衍生的碳的表面积和孔径。观察到最大表面积为2532 m 2 g -1 ,这比未活化的茶叶(3.6 m 2 g −1 )。可以看出,电解质离子的大小对能量存储能力有深远的影响。在具有出色循环稳定性的3 m KOH电解质中观察到最大比电容292 F g -1 ,而在3 m KOH电解质中,最低比电容为246 F g -1 。在2 mV s -1 下使用3 m LiOH电解质。茶叶衍生电极在进行5000个研究周期后显示出几乎100%的电容保持率。对称超级电容器器件在1 mA cm -2 时显示出0.64 F cm -2 的最大比电容,并且在将电流密度提高到12时保留了约95%的比电容。 mA cm −2 ,证实了器件的高速率稳定性。将器件温度从10°C提高到80°C时,电荷存储容量可提高35%以上。研究表明,用过的茶叶可以低成本用于制造环境友好的高性能超级电容器设备。

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