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用于印刷平面微型超级电容器的石墨烯基油墨:综述

Graphene-Based Inks for Printing of Planar Micro-Supercapacitors: A Review.

作者信息

Sang Tran Tuan, Dutta Naba Kumar, Roy Choudhury Namita

机构信息

Department of Chemical and Environmental Engineering, School of Engineering, RMIT University, Melbourne, Victoria 3000, Australia.

出版信息

Materials (Basel). 2019 Mar 25;12(6):978. doi: 10.3390/ma12060978.

Abstract

Micro-supercapacitors have recently emerged as promising microscale power sources for portable and wearable microelectronics. However, most reported planar micro-supercapacitors suffer from low energy density and the complexity of fabrication, which calls for their further development. In recent years, the fortification of graphene has enabled the dramatic improvement of planar micro-supercapacitors by taking full advantage of in-plane interdigital architecture and the unique features of graphene. The development of viable printing technologies has also provided better means for manufacturing, bringing micro-supercapacitors closer to practical applications. This review summarizes the latest advances in graphene-based planar micro-supercapacitors, with specific emphasis placed on formulation of graphene-based inks and their fabrication routes onto interdigital electrodes. Prospects and challenges in this field are also discussed towards the realization of graphene-based planar micro-supercapacitors in the world of microelectronics.

摘要

微型超级电容器最近已成为用于便携式和可穿戴微电子设备的有前景的微型电源。然而,大多数已报道的平面微型超级电容器存在能量密度低和制造复杂的问题,这就需要对其进一步开发。近年来,石墨烯的强化使得平面微型超级电容器能够通过充分利用平面叉指结构和石墨烯的独特特性而得到显著改进。可行印刷技术的发展也为制造提供了更好的方法,使微型超级电容器更接近实际应用。本文综述了基于石墨烯的平面微型超级电容器的最新进展,特别强调了基于石墨烯的墨水的配方及其在叉指电极上的制造路线。还讨论了该领域在微电子世界中实现基于石墨烯的平面微型超级电容器的前景和挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9201/6470754/7e32a650c0c6/materials-12-00978-g001.jpg

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