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Ultrahigh areal number density solid-state on-chip microsupercapacitors via electrohydrodynamic jet printing

机译:超高压数密度固态固态片上微型电路机通过电液动力学喷射印刷

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Microsupercapacitors (MSCs) have garnered considerable attention as a promising power source for microelectronics and miniaturized portable/wearable devices. However, their practical application has been hindered by the manufacturing complexity and dimensional limits. Here, we develop a new class of ultrahigh areal number density solid-state MSCs (UHD SS–MSCs) on a chip via electrohydrodynamic (EHD) jet printing. This is, to the best of our knowledge, the first study to exploit EHD jet printing in the MSCs. The activated carbon-based electrode inks are EHD jet-printed, creating interdigitated electrodes with fine feature sizes. Subsequently, a drying-free, ultraviolet-cured solid-state gel electrolyte is introduced to ensure electrochemical isolation between the SS–MSCs, enabling dense SS–MSC integration with on-demand (in-series/in-parallel) cell connection on a chip. The resulting on-chip UHD SS–MSCs exhibit exceptional areal number density [36 unit cells integrated on a chip (area = 8.0 mm × 8.2 mm), 54.9 cells cmsup?2/sup] and areal operating voltage (65.9 V cmsup?2/sup).
机译:Microsupapacitors(MSCS)作为微电子和小型化便携式/可穿戴设备的有希望的电源,可以获得相当大的关注。然而,它们的实际应用已经受到制造复杂性和尺寸限制的阻碍。在这里,我们通过电液动力学(EHD)喷射印刷在芯片上开发一类新的超高级数密度固态MSCs(UHD SS-MSCs)。这是,据我们所知,第一次研究在MSCS中利用EHD喷射打印。激活的碳基电极油墨是EHD喷射印刷的,产生具有精细特征尺寸的交叉电极。随后,引入无干燥的紫外线固化的固态凝胶电解质,以确保SS-MSCs之间的电化学隔离,使得能够与点播(串联/平行)电池连接的密集SS-MSC集成芯片。得到的片上UHD SS-MSCs表现出异常的面值密度[36个单元电池集成在芯片上(面积= 8.0mm×8.2mm),54.9个细胞CM 2 ]和面值电压( 65.9 V cm ?2 )。

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