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Graphene–Cellulose Paper Flexible Supercapacitors

机译:石墨烯-纤维素纸柔性超级电容器

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摘要

A simple and scalable method to fabricate graphene-cellulose paper (GCP) membranes is reported; these membranes exhibit great advantages as freestanding and binder-free electrodes for flexible supercapacitors. The GCP electrode consists of a unique three-dimensional interwoven structure of graphene nanosheets and cellulose fibers and has excellent mechanical flexibility, good specific capacitance and power performance, and excellent cyclic stability. The electrical conductivity of the GCP membrane shows high stability with a decrease of only 6% after being bent 1000 times. This flexible GCP electrode has a high capacitance per geometric area of 81 mF cm−2, which is equivalent to a gravimetric capacitance of 120 F g−1 of graphene, and retains >99% capacitance over 5000 cycles. Several types of flexible GCP-based polymer supercapacitors with various architectures are assembled to meet the power-energy requirements of typical flexible or printable electronics. Under highly flexible conditions, the supercapacitors show a high capacitance per geometric area of 46 mF cm−2 for the complete devices. All the results demonstrate that polymer supercapacitors made using GCP membranes are versatile and may be used for flexible and portable micropower devices.
机译:报道了一种简单且可扩展的制造石墨烯纤维素纸(GCP)膜的方法。这些膜作为柔性超级电容器的独立式电极和无粘结剂电极具有很大的优势。 GCP电极由石墨烯纳米片和纤维素纤维的独特三维交织结构组成,具有出色的机械柔韧性,良好的比电容和功率性能以及出色的循环稳定性。 GCP膜的电导率表现出高稳定性,弯曲1000次后仅降低6%。这种柔性GCP电极每几何面积的静电容量为81 mF cm-2,这相当于石墨烯的120 F g-1的重量电容,并在5000次循环中保持> 99%的电容。组装了具有各种架构的几种类型的基于GCP的柔性聚合物超级电容器,以满足典型的柔性或可印刷电子产品的功率能量要求。在高度灵活的条件下,超级电容器在整个器件中每几何面积显示46 mF cm-2的高电容。所有结果表明,使用GCP膜制成的聚合物超级电容器用途广泛,可用于柔性和便携式微功率设备。

著录项

  • 来源
    《Advanced energy materials 》 |2011年第5期| 1-6| 共6页
  • 作者单位

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 People's Republic of China;

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 People's Republic of China;

    ARC Centre of Excellence for Functional Nanomaterials Australian Institute for Bioengineering and Nanotechnology The University of Queensland St Lucia Brisbane Qld 4072 Australia;

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 People's Republic of China;

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 People's Republic of China;

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cellulose; energy storage; supercapacitors; graphene; polymer electrolytes;

    机译:纤维素;储能;超级电容器;石墨烯;聚合物电解质;

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