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Comparison of Laser-Synthetized Nanographene-Based Electrodes for Flexible Supercapacitors

机译:柔性超级电容器的激光合成纳米石墨烯基电极的比较

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摘要

In this paper, we present a comparative study of a cost-effective method for the mass fabrication of electrodes to be used in thin-film flexible supercapacitors. This technique is based on the laser-synthesis of graphene-based nanomaterials, specifically, laser-induced graphene and reduced graphene oxide. The synthesis of these materials was performed using two different lasers: a CO laser with an infrared wavelength of λ = 10.6 µm and a UV laser (λ = 405 nm). After the optimization of the parameters of both lasers for this purpose, the performance of these materials as bare electrodes for flexible supercapacitors was studied in a comparative way. The experiments showed that the electrodes synthetized with the low-cost UV laser compete well in terms of specific capacitance with those obtained with the CO laser, while the best performance is provided by the rGO electrodes fabricated with the CO laser. It has also been demonstrated that the degree of reduction achieved with the UV laser for the rGO patterns was not enough to provide a good interaction electrode-electrolyte. Finally, we proved that the specific capacitance achieved with the presented supercapacitors can be improved by modifying the in-planar structure, without compromising their performance, which, together with their compatibility with doping-techniques and surface treatments processes, shows the potential of this technology for the fabrication of future high-performance and inexpensive flexible supercapacitors.
机译:在本文中,我们对用于薄膜柔性超级电容器的电极批量生产的一种经济高效的方法进行了比较研究。该技术基于激光合成石墨烯基纳米材料,特别是激光诱导的石墨烯和还原石墨烯氧化物。这些材料的合成是使用两种不同的激光器进行的:红外波长为λ= 10.6 µm的CO激光器和紫外线(λ= 405 nm)激光器。在为此目的优化两个激光器的参数之后,以比较的方式研究了这些材料作为柔性超级电容器的裸电极的性能。实验表明,用低成本UV激光器合成的电极在比电容方面与用CO激光器获得的电极具有良好的竞争性,而用CO激光器制造的rGO电极可提供最佳性能。还已经证明,对于rGO图案,用UV激光实现的还原程度不足以提供良好的相互作用的电极-电解质。最后,我们证明了通过改进平面结构可以改善所提出的超级电容器所获得的比电容,而不会影响其性能,这与它们与掺杂技术和表面处理工艺的兼容性一起显示了该技术的潜力用于制造未来的高性能和廉价的柔性超级电容器。

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