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Carbon-Based Flexible and All-Solid-State Micro-supercapacitors Fabricated by Inkjet Printing with Enhanced Performance

机译:通过喷墨打印制造的碳基柔性全固态微型超级电容器具有增强的性能

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摘要

AbstractBy means of inkjet printing technique, flexible and all-solid-state micro-supercapacitors (MSCs) were fabricated with carbon-based hybrid ink composed of graphene oxide (GO, 98.0 vol.%) ink and commercial pen ink (2.0 vol.%). A small amount of commercial pen ink was added to effectively reduce the agglomeration of the GO sheets during solvent evaporation and the following reduction processes in which the presence of graphite carbon nanoparticles served as nano-spacer to separate GO sheets. The printed device fabricated using the hybrid ink, combined with the binder-free microelectrodes and interdigital microelectrode configuration, exhibits nearly 780% enhancement in areal capacitance compared with that of pure GO ink. It also shows excellent flexibility and cycling stability with nearly 100% retention of the areal capacitance after 10,000 cycles. The all-solid-state device can be optionally connected in series or in parallel to meet the voltage and capacity requirements for a given application. This work demonstrates a promising future of the carbon-based hybrid ink for directly large-scale inkjet printing MSCs for disposable energy storage devices.
机译:摘要通过喷墨印刷技术,使用由氧化石墨烯(GO,98.0 vol。%)和商用笔墨(2.0 vol。%)组成的碳基混合油墨制造了柔性全固态微型超级电容器(MSC)。 )。添加少量的商用钢笔墨水,以有效减少溶剂蒸发过程中GO片的团聚以及随后的还原过程,在这些还原过程中,石墨碳纳米颗粒的存在充当了纳米间隔层,以分隔GO片。与纯GO墨水相比,使用混合墨水结合了无粘合剂的微电极和叉指式微电极配置制成的印刷设备的面电容增强了近780%。它还显示出出色的柔韧性和循环稳定性,在10,000次循环后几乎保持了100%的面电容。全固态设备可以选择串联或并联连接,以满足给定应用的电压和容量要求。这项工作证明了直接用于可弃式储能装置的大规模喷墨印刷MSC的碳基混合油墨的前景广阔。

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