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Pie-like electrode design for high-energy density lithium-sulfur batteries

机译:饼状电极设计,用于高能量密度锂硫电池

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Owing to the overwhelming advantage in energy density, lithium-sulfur (Li-S) battery is a promising next-generation electrochemical energy storage system. Despite many efforts in pursuing long cycle life, relatively little emphasis has been placed on increasing the areal energy density. Herein, we have designed and developed a 'pie' structured electrode, which provides an excellent balance between gravimetric and areal energy densities. Combining lotus root-like multichannel carbon nanofibers 'filling' and amino-functionalized graphene 'crust', the free-standing paper electrode (S mass loading: 3.6 mgcm(-2)) delivers high specific capacity of 1,314 mAhg(-1) (4.7mAhcm(-2)) at 0.1 C (0.6mAcm(-2)) accompanied with good cycling stability. Moreover, the areal capacity can be further boosted to more than 8mAhcm(-2) by stacking three layers of paper electrodes with S mass loading of 10.8 mgcm(-2).
机译:由于在能量密度方面具有压倒性的优势,锂硫(Li-S)电池是有前途的下一代电化学储能系统。尽管在追求长循环寿命方面做出了许多努力,但是相对很少的重点放在增加面能量密度上。本文中,我们设计并开发了一种“饼状”结构的电极,该电极在重量和面积能量密度之间提供了出色的平衡。独立式纸电极(荷重:3.6 mgcm(-2))结合了lotus状多通道碳纳米纤维“填充物”和氨基官能化石墨烯“硬皮”,提供了1,314 mAhg(-1)的高比容量( 4.7mAhcm(-2))在0.1 C(0.6mAcm(-2))下具有良好的循环稳定性。此外,通过堆叠三层纸质电极,S质量载荷为10.8 mgcm(-2),可以将面积容量进一步提高到8mAhcm(-2)以上。

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