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High-Performance Stable Potassium-Sulfur Batteries Enabled by Free-Standing CNT Film-Based Composite Cathodes

机译:高性能稳定的硫磺电池通过独立的CNT薄膜基复合阴极使能

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摘要

To maintain the tendency towards lower cost and sustainability of innovative battery technologies, one challenge is the development of high-energy ecofriendly devices based on the potassium-sulfur (K-S) system using efficient sulfur-based cathodes. A free-standing flexible carbon nanotube/sulfur (CNT/S) composite cathode based on CNT film to form a conductive network on a sulfur substrate is proposed herein. The synthesized CNT/S composite takes advantages of the intercrossing microchannels of the conductive CNT networks, which clearly favors rapid charge transfer and enhanced active mass loading as well as the surface electrocatalytic effect in K-S batteries. The resulting self-supported CNT/S film cathode with high flexibility achieved high initial capacity of 585 mAh g(-1) at current density of 50 mA g(-1). The proposed CNT/S cathode system could thus be a promising candidate for further advancement of next-generation K-S power systems for practical applications.
机译:为了保持创新电池技术的低成本和可持续性趋势,一个挑战是开发基于钾硫(K-S)系统、使用高效硫基阴极的高能环保设备。本文提出了一种基于碳纳米管薄膜的独立柔性碳纳米管/硫(CNT/S)复合阴极,以在硫衬底上形成导电网络。合成的碳纳米管/硫复合材料利用了导电碳纳米管网络的交叉微通道,这显然有利于快速电荷转移和增强活性质量负载,以及K-S电池中的表面电催化效应。在50 mA g(-1)的电流密度下,得到的具有高柔韧性的自支撑CNT/S薄膜阴极获得了585 mAh g(-1)的高初始容量。因此,所提出的碳纳米管/硫阴极系统有望成为下一代K-S电源系统进一步发展的潜在应用。

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