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Foldable interpenetrated metal-organic frameworks/carbon nanotubes thin film for lithium–sulfur batteries

机译:锂硫电池用可折叠的互穿金属有机骨架/碳纳米管薄膜

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摘要

Lithium–sulfur batteries are promising technologies for powering flexible devices due to their high energy density, low cost and environmental friendliness, when the insulating nature, shuttle effect and volume expansion of sulfur electrodes are well addressed. Here, we report a strategy of using foldable interpenetrated metal-organic frameworks/carbon nanotubes thin film for binder-free advanced lithium–sulfur batteries through a facile confinement conversion. The carbon nanotubes interpenetrate through the metal-organic frameworks crystal and interweave the electrode into a stratified structure to provide both conductivity and structural integrity, while the highly porous metal-organic frameworks endow the electrode with strong sulfur confinement to achieve good cyclability. These hierarchical porous interpenetrated three-dimensional conductive networks with well confined S8 lead to high sulfur loading and utilization, as well as high volumetric energy density.
机译:锂-硫电池具有高能量密度,低成本和环境友好的特点,因此,当硫电极的绝缘性,穿梭效应和体积膨胀得到很好解决时,它们便是为柔性设备供电的有前途的技术。在这里,我们报告了一种通过可折叠的转换将可折叠互穿的金属有机骨架/碳纳米管薄膜用于无粘结剂高级锂硫电池的策略。碳纳米管穿过金属-有机骨架晶体相互渗透,并将电极交织成分层结构,以提供导电性和结构完整性,而高度多孔的金属-有机骨架赋予电极强的硫约束作用,以实现良好的循环性。这些分级的多孔互穿的三维导电网络具有良好的S8约束,导致高硫负荷和高利用率,以及高体积能量密度。

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