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喷墨打印制备高透明柔性石墨烯微超级电容器。

Inkjet printed highly transparent and flexible graphene micro-supercapacitors.

机构信息

KTH Royal Institute of Technology, School of Information and Communication Technology, Electrum 229, SE-164 40 Kista, Sweden.

出版信息

Nanoscale. 2017 Jun 1;9(21):6998-7005. doi: 10.1039/c7nr02204b.

Abstract

Modern energy storage devices for portable and wearable technologies must fulfill a number of requirements, such as small size, flexibility, thinness, reliability, transparency, manufacturing simplicity and performance, in order to be competitive in an ever expanding market. To this end, a comprehensive inkjet printing process is developed for the scalable and low-cost fabrication of transparent and flexible micro-supercapacitors. These solid-state devices, with printed thin films of graphene flakes as interdigitated electrodes, exhibit excellent performance versus transparency (ranging from a single-electrode areal capacitance of 16 μF cm at transmittance of 90% to a capacitance of 99 μF cm at transmittance of 71%). Also, transparent and flexible devices are fabricated, showing negligible capacitance degradation during bending. The ease of manufacturing coupled with their great capacitive properties opens up new potential applications for energy storage devices ranging from portable solar cells to wearable sensors.

摘要

为了在不断扩大的市场中具有竞争力,用于便携式和可穿戴技术的现代储能设备必须满足一些要求,例如体积小、灵活性、薄度、可靠性、透明度、制造简单和性能。为此,开发了一种全面的喷墨打印工艺,用于可扩展和低成本制造透明和灵活的微型超级电容器。这些固态器件采用印刷的石墨烯薄片作为交错电极的薄膜,在透光率为 90%时表现出优异的透光率与比电容(从单个电极的比电容 16 μF cm 到透光率为 71%时的电容 99 μF cm)之间的关系。此外,还制造了透明和灵活的器件,在弯曲时电容几乎没有下降。制造的简易性加上其出色的电容性能为储能器件开辟了新的潜在应用,从便携式太阳能电池到可穿戴传感器。

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