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Facile Fabrication of Flexible In‐Plane Graphene Micro‐Supercapacitor via Flash Reduction

机译:通过减少闪蒸方便地制造柔性平面石墨烯微超级电容器

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Flash reduction of graphene oxide is an efficient method for producing high quality reduced graphene oxide under room temperature ambient conditions without the use of hazardous reducing agents (such as hydrazine and hydrogen iodide). The entire process is fast, low‐cost, and suitable for large‐scale fabrication, which makes it an attractive process for industrial manufacturing. Herein, we present a simple fabrication method for a flexible in‐plane graphene micro‐supercapacitor using flash light irradiation. All carbon‐based, monolithic supercapacitors with in‐plane geometry can be fabricated with simple flash irradiation, which occurs in only a few milliseconds. The thinness of the fabricated device makes it highly flexible and thus useful for a variety of applications, including portable and wearable electronics. The rapid flash reduction process creates a porous graphene structure with high surface area and good electrical conductivity, which ultimately results in high specific capacitance (36.90?mF?cm~(?2)) and good cyclic stability up to 8,000 cycles.
机译:氧化石墨烯的闪蒸还原是在室温环境条件下不使用有害还原剂(例如肼和碘化氢)生产高质量的还原氧化石墨烯的有效方法。整个过程快速,低成本,适合大规模制造,这使其成为工业制造的有吸引力的过程。在本文中,我们介绍了一种使用闪光灯照射的柔性面内石墨烯微型超级电容器的简单制造方法。所有具有面内几何形状的碳基单片超级电容器都可以通过简单的闪光辐射来制造,这种闪光仅需几毫秒的时间。制成设备的薄度使其具有高度的灵活性,因此可用于包括便携式和可穿戴电子设备在内的各种应用。快速闪蒸降低过程产生了具有高表面积和良好导电性的多孔石墨烯结构,最终导致高比电容(36.90?mF?cm〜(?2))和高达8,000个循环的良好循环稳定性。

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