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首页> 外文期刊>Journal of Materiomics >Scalable microfabrication of three-dimensional porous interconnected graphene scaffolds with carbon spheres for high-performance all carbon-based micro-supercapacitors
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Scalable microfabrication of three-dimensional porous interconnected graphene scaffolds with carbon spheres for high-performance all carbon-based micro-supercapacitors

机译:具有碳球的三维多孔互连石墨烯支架的可扩展微制造,可用于高性能全碳基微型超级电容器

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As one of the most important micro energy storage devices (MESDs), graphene-based micro-supercapacitors (G-MSCs) possess the advantages of excellent flexibility, long cycle life, affordability and high reliability. In most cases, constructing three-dimensional (3D) graphene networks is widely utilized to promote the permeation of electrolyte and enhance the utilization of active materials. In this work, conventional freeze-drying process is utilized in the fabrication of G-MSCs to constitute 3D interconnected networks micro-electrodes, and further by regulating the composition of inks, carbon spheres (CSs) at different mass loadings are introduced into the graphene scaffolds to further increase the active sites of the micro-electrodes. The fabricated all carbon-based MSC with the optimal mass loading of CSs (0.406?mg?cm~(?2)) exhibits a high specific areal capacitance of 17.01?mF?cm~(?2) at the scan rate of 10?mV?s~(?1) and a capacitance retention of 93.14% after 10000 cycles at the scan rate of 500?mV?s~(?1). The proposed microfabrication process is facile and fully compatible with modern microtechnologies and will be highly suitable for large-scale production and integration.
机译:作为最重要的微能量存储设备(MESD)之一,基于石墨烯的微型超级电容器(G-MSC)具有出色的柔韧性,长循环寿命,可负担性和高可靠性的优点。在大多数情况下,构建三维(3D)石墨烯网络被广泛用于促进电解质的渗透和增强活性物质的利用率。在这项工作中,常规的冷冻干燥工艺用于制造G-MSC,以构成3D互连网络微电极,并进一步通过调节油墨的成分,将不同质量负载下的碳球(CS)引入石墨烯中支架以进一步增加微电极的活性位点。合成的全碳基MSC的CS的最佳质量载荷为(0.406?mg?cm〜(?2)),在10?的扫描速率下具有17.01?mF?cm〜(?2)的高比表面积电容。 mV?s〜(?1),以500?mV?s〜(?1)的扫描速度进行10000次循环后的电容保持率为93.14%。拟议的微细加工工艺简便易行,并与现代微技术完全兼容,非常适合大规模生产和集成。

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