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Laser-Induced Reduction of Graphene Oxide by Intensity-Modulated Line Beam for Supercapacitor Applications

机译:通过强度调制线束进行激光诱导的石墨烯氧化物,用于超级电容器应用

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摘要

Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/discharge of electrical energy. In this study, the laser-based fabrication of reduced graphene oxide (rGO) electrodes for supercapacitors is demonstrated with several new features of laser irradiation. A conventional CO2 laser irradiation system is equipped with (1) a nitrogen blower to avoid combustion of the GO paper, (2) a cylindrical lens for producing a wide line beam, and (3) an optical chopper system for generating an intensity-modulated laser beam. Scanning of the intensity-modulated line beam transforms an extended area of GO into chemically reduced and physically porous graphene. The effects of the laser beam modifications and scanning parameters on the electrochemical performance of the rGO electrode are investigated. The rGO electrode exhibits a high specific capacitance (up to similar to 130 F/g) at a current density of 1 A/g. This work can serve as a reference for the process optimization of laser-induced GO reduction.
机译:超级电容器是用于高功率输出和电能快速充电/放电的不可替代的能量存储装置。在该研究中,用不同的激光照射的几个新特征对超级电容器的还原石墨烯(RGO)电极的基于激光的制造。传统的CO2激光照射系统配备有(1)氮气鼓,以避免Go纸的燃烧,(2)用于产生宽线束的圆柱形透镜,(3)用于产生强度调制的光学斩波系统激光束。扫描强度调制的线束变换到化学减少和物理多孔石墨烯的扩展区域。研究了激光束修改和扫描参数对RGO电极电化学性能的影响。 RGO电极在电流密度为1 A / g的情况下表现出高比电容(最高可达130 f / g)。这项工作可以作为激光诱导的过程优化的参考。

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