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HighPerformance All-Solid-State Flexible Micro-Pseudocapacitor Based onHierarchically Nanostructured Tungsten Trioxide Composite

机译:高基于高性能的全固态柔性微伪电容器分层纳米结构三氧化钨复合材料

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摘要

Microsupercapacitors (MSCs) are promising energy storage devices to power miniaturized portable electronics and microelectromechanical systems. With the increasing attention on all-solid-state flexible supercapacitors, new strategies for high-performance flexible MSCs are highly desired. Here, we demonstrate all-solid-state, flexible micropseudocapacitors via direct laser patterning on crack-free, flexible WO3/polyvinylidene fluoride (PVDF)/multiwalled carbon nanotubes (MWCNTs) composites containing high levels of porous hierarchically structured WO3 nanomaterials (up to 50 wt %) and limited binder (PVDF, <25 wt %). The work leads to an areal capacitance of 62.4 mF·cm–2 and a volumetric capacitance of 10.4 F·cm–3, exceeding that of graphene based flexible MSCs by a factor of 26 and 3, respectively. As a noncarbon based flexible MSC, hierarchically nanostructured WO3 in the narrow finger electrode is essential to such enhancement in energy density due to its pseudocapacitive property. The effects of WO3/PVDF/MWCNTs composite composition and the dimensions of interdigital structure on the performance of the flexible MSCsare investigated.
机译:微型超级电容器(MSC)是有前途的储能设备,可为微型便携式电子设备和微机电系统提供动力。随着对全固态柔性超级电容器的日益关注,人们迫切需要用于高性能柔性MSC的新策略。在这里,我们通过在无裂纹的柔性WO3 /聚偏二氟乙烯(PVDF)/多壁碳纳米管(MWCNT)复合材料上直接进行激光构图来演示全固态,柔性微psapadocapacitors,该复合材料包含高水平的多孔分层结构WO3纳米材料(最多50种) wt%)和受限的粘合剂(PVDF,<25 wt%)。这项工作导致了面积电容为62.4 mF·cm –2 和体积电容为10.4 F·cm –3 ,比基于石墨烯的柔性MSC的容量高出一倍分别为26和3。作为一种非碳基柔性MSC,由于其伪电容特性,窄指状电极中的分层纳米结构WO3对于提高能量密度至关重要。 WO3 / PVDF / MWCNTs复合组成及叉指结构尺寸对柔性MSC性能的影响被调查。

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