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Graphene-based quasi-solid-state lithium-oxygen batteries with high energy efficiency and a long cycling lifetime

机译:基于石墨烯的准固态锂氧电池,具有高能效和长循环寿命

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An aprotic lithium-oxygen battery with an ultrahigh theoretical energy density has attracted significant attention as the next-generation electrochemical energy device demanded by all-electric vehicles and other high-energy devices. Extensive effort has recently been devoted to improving the performances of cathodes, anodes, and electrolytes. However, as an integrated system, the overall battery properties are not determined by the individual components but by the synergy of all components. Despite important progress in the development of cathodes, anodes, and electrolytes, the system-level design and assembly of lithium-oxygen batteries have not benefited from these recent advances. Here, we report a graphene-based quasi-solid-state lithium-oxygen battery consisting of a rationally designed 3D porous graphene cathode, redox mediator-modified gel polymer electrolyte, and porous graphene/Li anode. This integrated prototype battery simultaneously addresses the major challenges of lithium-oxygen batteries and achieves stable cycling at a large capacity, low charge overpotential and high rate in both coin-type and large-scale pouch-type batteries. For the first time, these lithium-oxygen batteries as a whole device deliver gravimetric and volumetric energy densities higher than those of a commercial Li-ion polymer battery. This study represents important progress toward the practical implementation of full-performance lithium-oxygen batteries.
机译:具有超高理论能量密度的非质子锂氧电池已成为全电动汽车和其他高能量设备所需要的下一代电化学能量设备,引起了广泛的关注。近来,人们已经进行了广泛的努力来改善阴极,阳极和电解质的性能。但是,作为一个集成系统,整个电池的性能不是由单个组件决定的,而是由所有组件的协同作用决定的。尽管在阴极,阳极和电解质的开发方面取得了重要进展,但是锂氧电池的系统级设计和组装并未从这些最新进展中受益。在这里,我们报告了一种基于石墨烯的准固态锂氧电池,该电池由合理设计的3D多孔石墨烯阴极,氧化还原介体改性的凝胶聚合物电解质和多孔石墨烯/锂阳极组成。这种集成的原型电池同时解决了锂氧电池的主要挑战,并在硬币型和大型袋装型电池中以大容量,低充电过电势和高速率实现了稳定的循环。这些锂氧电池作为一个整体,首次提供了比商业锂离子聚合物电池更高的重量和体积能量密度。这项研究代表了向全功能锂氧电池实际应用迈进的重要进展。

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