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In situ MoS2 Decoration of Laser-Induced Graphene as Flexible Supercapacitor Electrodes

机译:激光诱导石墨烯作为柔性超级电容器电极的原位MoS2装饰

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Herein, we are reporting a rapid one-pot synthesis of MoS2-decorated laser-induced graphene (MoS2-LIG) by direct writing of polyimide foils. By covering the polymer surface with a layer of MoS2 dispersion before processing, it is possible to obtain an in situ decoration of a porous graphene network during laser writing. The resulting material is a three-dimensional arrangement of agglomerated and wrinkled graphene flakes decorated by MoS2 nanosheets with good electrical properties and high surface area, suitable to be employed as electrodes for supercapacitors, enabling both electric double-layer and pseudo-capacitance behaviors. A deep investigation of the material properties has been performed to understand the chemical and physical characteristics of the hybrid MoS2-graphene-like material. Symmetric supercapacitors have been assembled in planar configuration exploiting the polymeric electrolyte; the resulting performances of the here-proposed material allow the prediction of the enormous potentialities of these flexible energy-storage devices for industrial-scale production.
机译:在这里,我们报道了通过直接写聚酰亚胺箔片快速地一锅法合成MoS2装饰的激光诱导石墨烯(MoS2-LIG)。通过在加工之前用一层MoS2分散体覆盖聚合物表面,可以在激光写入过程中获得多孔石墨烯网络的原位装饰。生成的材料是由MoS2纳米片装饰的附聚和起皱的石墨烯薄片的三维排列,具有良好的电性能和高表面积,适合用作超级电容器的电极,从而实现双电层和伪电容行为。已经对材料性能进行了深入研究,以了解混合型MoS2-石墨烯样材料的化学和物理特性。已经利用聚合物电解质将对称的超级电容器组装成平面结构。本文提出的材料的最终性能可以预测这些灵活的储能装置在工业规模生产中的巨大潜力。

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