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Scalable Fabrication and Integration of Graphene Microsupercapacitors through Full Inkjet Printing

机译:通过全喷墨印刷可扩展的制造和石墨烯微型电路机的集成

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摘要

A simple full-inkjet-printing technique is developed for the scalable fabrication of graphene-based microsupercapacitors (MSCs) on various substrates. High-performance graphene inks are formulated by integrating the electrochemically exfoliated graphene with a solvent exchange technique to reliably print graphene interdigitated electrodes with tunable geometry and "thickness. Along with the printed polyelectrolyte, poly(4-styrenesulfonic acid), the fully printed graphene-based MSCs attain the highest areal capacitance of similar to 0.7 mF/cm(2), substantially advancing the state-of-art of all-solid-state MSCs with printed graphene electrodes. The full printing solution enables scalable fabrication of MSCs and effective connection of them in parallel and/or in series at various scales. Remarkably, more than 100 devices have been connected to form large-scale MSC arrays as power banks on both silicon wafers and Kapton. Without any extra protection or encapsulation, the MSC arrays can be reliably charged up to 12 V and retain the performance even 8 months after fabrication.
机译:开发了一种简单的全喷墨印刷技术,用于在各种基板上进行基于石墨烯的微型电路仪(MSCs)的可伸缩制造。通过将电化学输出的石墨烯与溶剂交换技术集成来配制高性能石墨烯油墨,以可靠地打印具有可调几何形状和“厚度的石墨烯互化的电极。与印刷聚电解质,聚(4-苯乙烯磺酸),完全印刷的石墨烯 - 基于MSCs的MSCS获得了类似于0.7mF / cm(2)的最高面积电容,基本上推动了用印刷石墨烯电极的全固态MSC的最新技术。全印刷解决方案使得能够进行可扩展的MSC和有效连接在各种尺度并行和/或串联中。显着的是,已连接100多种设备以在硅晶片和kapton上形成大规模的MSC阵列。没有任何额外的保护或封装,MSC阵列可以可靠充满12 V并在制造后8个月内保持性能。

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