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基于石墨烯和氧化还原活性电解质的印刷纸基混合微型超级电容器的设计与制造

Design and Fabrication of Printed Paper-Based Hybrid Micro-Supercapacitor by using Graphene and Redox-Active Electrolyte.

作者信息

Nagar Bhawna, Dubal Deepak P, Pires Luis, Merkoçi Arben, Gómez-Romero Pedro

机构信息

Novel Energy-Oriented Materials Group, Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and The Barcelona Institute of Science and Technology, Campus UAB, 08193, Bellaterra, Barcelona, Spain.

Nanobioelectronics and Biosensors Group, Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and The Barcelona Institute of Science and Technology, Campus UAB, 08193, Bellaterra, Barcelona, Spain.

出版信息

ChemSusChem. 2018 Jun 11;11(11):1849-1856. doi: 10.1002/cssc.201800426. Epub 2018 May 22.

Abstract

Inspired by future needs of flexible, simple, and low-cost energy storage devices, smart graphene-based micro-supercapacitors on conventional Xerox paper substrates were developed. The use of redox-active species (iodine redox couple) was explored to further improve the paper device's performance. The device based on printed graphene paper itself already had a remarkable maximum volumetric capacitance of 29.6 mF cm (volume of whole device) at 6.5 mA cm . The performance of the hybrid electrode with redox-active potassium iodide at the graphene surface was tested. Remarkably, the hybrid device showed improved volumetric capacitance of 130 mF cm . The maximum energy density for a graphene+KI device in H SO electrolyte was estimated to be 0.026 mWh cm . Thus, this work offers a new simple, and lightweight micro-supercapacitor based on low-cost printed graphene paper, which will have great applications in portable electronics.

摘要

受未来对灵活、简单且低成本储能设备需求的启发,在传统施乐纸基板上开发了基于智能石墨烯的微型超级电容器。研究了使用氧化还原活性物质(碘氧化还原对)来进一步提高纸质器件的性能。基于印刷石墨烯纸本身的器件在6.5 mA cm 时已经具有29.6 mF cm (整个器件的体积)的显著最大体积电容。测试了在石墨烯表面具有氧化还原活性碘化钾的混合电极的性能。值得注意的是,混合器件的体积电容提高到了130 mF cm 。在H SO 电解质中,石墨烯 + KI 器件的最大能量密度估计为0.026 mWh cm 。因此,这项工作提供了一种基于低成本印刷石墨烯纸的新型简单、轻质微型超级电容器,它将在便携式电子产品中具有巨大的应用前景。

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