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MoS2/Epitaxial graphene layered electrodes for solid-state supercapacitors

机译:用于固态超级电容器的MOS2 /外延石墨烯分层电极

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摘要

The potential of transition metal dichalcogenides such as MoS2 for energy storage has been significantly limited so far by the lack of conductivity and structural stability. Employing highly conductive, graphitic materials in combination with transition metal dichalcogenides can address this gap. Here, we explore the use of a layered electrode structure for solid-state supercapacitors, made of MoS2 and epitaxial graphene (EG) on cubic silicon carbide for on-silicon energy storage. We show that the energy storage of the solid-state supercapacitors can be significantly increased by creating layered MoS2/graphene electrodes, yielding a substantial improvement as compared to electrodes using either EG or MoS2 alone. We conclude that the conductivity of EG and the growth morphology of MoS2 on graphene play an enabling role in the successful use of transition metal dichalcogenides for on-chip energy storage.
机译:由于缺乏导电性和结构稳定性,过渡金属二硫化钼(如MoS2)储能的潜力受到极大限制。采用高导电性石墨材料和过渡金属二卤化物可以解决这一差距。在这里,我们探索了在固态超级电容器中使用分层电极结构,该结构由MoS2和外延石墨烯(EG)在立方碳化硅上制成,用于硅上储能。我们发现,通过制造层状MoS2/石墨烯电极,固态超级电容器的储能能力可以显著提高,与单独使用EG或MoS2的电极相比,产生了显著的改善。我们得出结论,EG的导电性和石墨烯上MoS2的生长形态对过渡金属二卤化物成功用于片上储能起到了促进作用。

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