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Enhanced Electrochemical Performance of Micro-Supercapacitors Via Laser-Scribed Cobalt/Reduced Graphene Oxide Hybrids

机译:通过激光划线钴/还原氧化石墨烯杂种的微超级电容器的电化学性能提高

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摘要

The evolution of "smart life," which connects all internet-of-things (IoT) microdevices and microsensors under wireless communication grids, requires microscale energy storage devices with high power and energy density and long-term cyclability to integrate them with sustainable power generators. Instead of Li-ion batteries with a short lifetime, pseudocapacitors with longer or infinite cyclability and high-power density have been considered as efficient energy storage devices for IoT. However, the design and fabrication of microscale pseudocapacitors have difficulties in patterning microscale electrodes when loading active materials at specific points of the electrodes using conventional microfabrication methods. Here, we developed a facile, one-step fabrication method of micro-supercapacitors (MSCs) through the in situ formation of Co metals and the reduced graphene oxides (rGOs) in a one-pot laser scribing process. The prepared Co/rGO MSC thus exhibited four times higher capacitance than the rGO MSC, due to the Faradaic charge capacitance behavior of the Co/rGO composites.
机译:“智能生活”将所有物联网(IoT)微型设备和无线通信网络下的微型传感器连接起来,它的发展需要具有高功率、高能量密度和长期可循环性的微型储能设备,以将其与可持续的发电机相结合。与寿命短的锂离子电池相比,具有更长或无限循环能力和高功率密度的假电容器被认为是物联网的高效储能装置。然而,当使用传统的微加工方法在电极的特定点加载活性材料时,微尺度伪电容器的设计和制造在微尺度电极图案化方面存在困难。在这里,我们开发了一种简便、一步制备微型超级电容器(MSC)的方法,通过一锅激光刻划过程中原位生成Co金属和还原石墨烯氧化物(RGO)。由于Co/rGO复合材料的法拉第电荷电容特性,制备的Co/rGO-MSC的电容是rGO-MSC的四倍。

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