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Fabrication of Reduced Graphene Oxide Based Ultra-high Cycle Life Flexible Fiber Supercapacitor with Different Modes

机译:用不同模式制造减少基于氧化石墨烯的超高循环寿命柔性纤维超级电容器

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摘要

Few layered flexible oxygen functionalized reduced graphene oxide (OFRGO) is prepared by hydrothermal method, where Na2S is acted as reducing agent. The prepared OFRGO is used as electrodes for the fabrication of flexible fiber supercapacitor at various modes like normal, ring and zigzag. The fabricated device exhibits a maximum specific capacitance of 7.6 mF cm1 at 5 mV s 1 and delivered 97.3% of Coulombic efficiency over 1.6 lakh cycles. Interestingly, no significant difference in performance is noticed in all the devices that reveals the good flexibility of the device. The available oxygen functional groups support to improve the specific capacitance. Finally, the fabricated symmetric fiber supercapacitor is integrated with energy harvesting system, i. e., commercial solar cells and powered to glow red light emitting diode (LED). Hence, the fabricated flexible device is reliable to integrate with energy harvesting system and can also be used for flexible energy storage applications.
机译:很少有层状柔性氧官能化还原的氧化石墨烯(OFRGO)是通过水热法制备的,其中Na2s充当还原剂。 准备的OFRGO用作在普通,环和曲折等各种模式下制造柔性纤维超级电容器的电极。 制造的设备在5 mV s 1时表现出7.6 MF CM1的最大比电容,并在160万个周期内传递了97.3%的库仑效率。 有趣的是,在所有设备的设备中,性能没有明显差异。 可用的氧官能团支持提高特定电容。 最后,制造的对称纤维超级电容器与能量收集系统集成在一起。 例如,商业太阳能电池,并发出发光的红光发射二极管(LED)。 因此,制造的柔性设备可与能源收集系统集成可靠,也可以用于柔性储能应用。

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