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Freestanding three-dimensional graphene/Mno_2 composite networks as ultralight and flexible supercapacitor electrodes

机译:独立的三维石墨烯/ Mno_2复合网络,超轻且柔性的超级电容器电极

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A lightweight, flexible, and highly efficient energy management strategy is needed for flexible energy-storage devices to meet a rapidly growing demand. Graphene-based flexible supercapacitors are one of the most promising candidates because of their intriguing features. In this report, we describe the use of freestanding, lightweight (0.75 mg/cm~2), ultrathin (<200 μm), highly conductive (55 S/cm), and flexible three-dimensional (3D) graphene networks, loaded with MnO_2 by electrodeposition, as the electrodes of a flexible supercapacitor. It was found that the 3D graphene networks showed an ideal supporter for active materials and permitted a large MnO_2 mass loading of 9.8 mg/cm~2 (~92.9% of the mass of the entire electrode), leading to a high area capacitance of 1.42 F/cm~2 at a scan rate of 2 mV/s. With a view to practical applications, we have further optimized the MnO2 content with respect to the entire electrode and achieved a maximum specific capacitance of 130 F/g. In addition, we have also explored the excellent electrochemical performance of a symmetrical supercapacitor (of weight less than 10 mg and thickness ~0.8 mm) consisting of a sandwich structure of two pieces of 3D graphene/MnO2 composite network separated by a membrane and encapsulated in polyethylene terephthalate (PET) membranes. This research might provide a method for flexible, lightweight, high-performance, low-cost, and environmentally friendly materials used in energy conversion and storage systems for the effective use of renewable energy.
机译:灵活的储能设备需要轻巧,灵活且高效的能源管理策略,才能满足快速增长的需求。基于石墨烯的柔性超级电容器由于其吸引人的特性而成为最有前途的候选者之一。在本报告中,我们描述了独立式,轻量级(0.75 mg / cm〜2),超薄型(<200μm),高导电性(55 S / cm)和灵活的三维(3D)石墨烯网络的使用, MnO_2通过电沉积,作为柔性超级电容器的电极。发现3D石墨烯网络显示出理想的活性材料载体,并允许9.8 mg / cm〜2的大MnO_2质量负载(占整个电极质量的92.9%),从而导致1.42的高面积电容F / cm〜2的扫描速率为2 mV / s。考虑到实际应用,我们进一步优化了整个电极的MnO2含量,并实现了130 F / g的最大比电容。此外,我们还探索了对称超级电容器(重量小于10 mg,厚度〜0.8 mm)的优异电化学性能,该超级电容器由两片3D石墨烯/ MnO2复合网络的三明治结构构成,该三层石墨烯/ MnO2复合网络被膜隔开并封装在聚对苯二甲酸乙二酯(PET)膜。这项研究可能会提供一种用于能量转换和存储系统中的灵活,轻便,高性能,低成本和环保材料的方法,以有效利用可再生能源。

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