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具有高面电容的不可见超级电容器。

Imperceptible Supercapacitors with High Area-Specific Capacitance.

机构信息

Institute for Integrative Nanosciences, Leibniz IFW Dresden, 01069, Dresden, Germany.

Material Systems for Nanoelectronics, TU Chemnitz, 09107, Chemnitz, Germany.

出版信息

Small. 2021 Jun;17(24):e2101704. doi: 10.1002/smll.202101704. Epub 2021 May 12.

DOI:10.1002/smll.202101704
PMID:33977641
Abstract

Imperceptible electronics will make next-generation healthcare and biomedical systems thinner, lighter, and more flexible. While other components are thoroughly investigated, imperceptible energy storage devices lag behind because the decrease of thickness impairs the area-specific energy density. Imperceptible supercapacitors with high area-specific capacitance based on reduced graphene oxide/polyaniline (RGO/PANI) composite electrodes and polyvinyl alcohol (PVA)/H SO gel electrolyte are reported. Two strategies to realize a supercapacitor with a total device thickness of 5 µm-including substrate, electrode, and electrolyte-and an area-specific capacitance of 36 mF cm simultaneously are implemented. First, the void volume of the RGO/PANI electrodes through mechanical compression is reduced, which decreases the thickness by 83% while retaining 89% of the capacitance. Second, the PVA-to-H SO mass ratio is decreased to 1:4.5, which improves the ion conductivity by 5000% compared to the commonly used PVA/H SO gel. Both advantages enable a 2 µm-thick gel electrolyte for planar interdigital supercapacitors. The impressive electromechanical stability of the imperceptible supercapacitors by wrinkling the substrate to produce folds with radii of 6 µm or less is demonstrated. The supercapacitors will be meaningful energy storage modules for future self-powered imperceptible electronics.

摘要

隐形电子产品将使下一代医疗保健和生物医学系统更薄、更轻、更灵活。虽然其他组件已经得到了彻底的研究,但隐形储能设备却落后了,因为厚度的减少会降低比能密度。本文报道了基于还原氧化石墨烯/聚苯胺(RGO/PANI)复合电极和聚乙烯醇(PVA)/H SO 凝胶电解质的具有高比面积电容的隐形超级电容器。实现总器件厚度为 5 µm(包括基底、电极和电解质)和比面积电容为 36 mF cm 的两种策略同时实现。首先,通过机械压缩减小 RGO/PANI 电极的空隙体积,厚度减少 83%,而电容保留 89%。其次,将 PVA 与 H SO 的质量比降低至 1:4.5,与常用的 PVA/H SO 凝胶相比,离子电导率提高了 5000%。这两个优点都使平面叉指超级电容器的凝胶电解质厚度达到 2 µm。通过将基底皱成半径小于或等于 6 µm 的褶皱,证明了隐形超级电容器令人印象深刻的机电稳定性。这些超级电容器将成为未来自供电隐形电子产品有意义的储能模块。

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