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High-Performance Flexible In-Plane Micro-Supercapacitors Based on Vertically Aligned CuSe@Ni(OH)(2) Hybrid Nanosheet Films

机译:基于垂直对齐的CUSE @ NI(OH)(2)杂交纳米片薄膜的高性能柔性柔性微型超级电容器

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摘要

The orientation and hybridization of ultrathin two-dimensional (2D) nanostructures on interdigital electrodes is vital for developing high-performance flexible in-plane micro-supercapacitors (MSCs). Despite great progress has been achieved, integrating CuSe and Ni(OH)(2) nanosheets to generate advanced nanohybrids with oriented arrangement of each component and formation of porous frameworks remains a challenge, and their application for in-plane MSCs has not been explored. Herein, the vertically aligned CuSe@Ni(OH)(2) hybrid nanosheet films with hierarchical open channels are skillfully deposited on Au interdigital electrodes/polyethylene terephthalate substrate via a template-free sequential electrodeposition approach, and directly employed to construct in-plane MSCs by choosing polyvinyl alcohol-LiCl gel as both the separator and the solid electrolyte. Because of the unique geometrical structure and combination of intrinsically conductive CuSe and battery-type Ni(OH)(2) components, such hybrid nanosheet films can not only resolve the poor conductivity and re stacking problems of Ni(OH)(2) nanosheets but also create the 3D electrons or ions transport pathway. Thus, the in-plane MSCs device fabricated by such hybrid nanosheet films exhibits high volumetric specific capacitance (38.9 F cm(-3)). Moreover, its maximal energy and power density can reach 5.4 mW h cm(-3) and 833.2 mW cm(-3), superior to pure CuSe nanosheets, and most of reported carbon materials and metal hydroxides/oxides/sulfides based in-plane MSCs ones. Also, the hybrid nanosheet films device shows excellent cycling performance, good flexibility, and mechanical stability. This work may shed some light on optimizing 2D electrode materials and promote the development of flexible in-plane MSCs or other energy storage systems.
机译:超薄二维(2D)纳米结构对叉指电极的取向和杂交对于开发高性能柔性的平面微型超级电容器(MSC)至关重要。尽管已经取得了很大进展,但整合了蚕豆和Ni(OH)(2)纳米片以产生具有每个组分的定向布置的先进的纳米组织,并且多孔框架的形成仍然是一个挑战,并且他们对面内MSC的应用尚未探讨。这里,具有分层开放通道的垂直对齐的蚕豆@ Ni(OH)(2)杂种纳米片膜通过无模板的顺序电沉积方法巧妙地沉积在Au叉指电极/聚对苯二甲酸乙二醇酯基板上,并直接用于构建平面内的MSCs通过选择聚乙烯醇-LICL凝胶作为隔膜和固体电解质。由于独特的几何结构和本质上导电丝和电池型Ni(OH)(2)组分的组合,这种杂种纳米片膜不仅可以解决Ni(OH)(2)纳米片的差的导电性和堆积问题,但是还创建3D电子或离子传输路径。因此,由这种杂合纳米片膜制造的平面内MSCs装置具有高容量的特定电容(38.9fcm(-3))。此外,其最大能量和功率密度可达到5.4mWH厘米(-3)和833.2兆瓦(-3),优于纯CUSE纳米片,以及大多数报告的碳材料和金属氢氧化物/氧化物/硫化物在面内MSCS。此外,杂交纳米片薄膜装置显示出优异的循环性能,良好的灵活性和机械稳定性。这项工作可以在优化2D电极材料上揭示一些光线,并促进柔性内部MSC或其他能量存储系统的开发。

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