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Liquid-Free Lithium-Oxygen Batteries

机译:无液锂氧电池

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摘要

Non-aqueous lithium-oxygen batteries are considered as most advanced power sources, albeit they are facing numerous challenges concerning almost each cell component. Herein, we diverge from the conventional and traditional liquid-based non-aqueous Li-O-2 batteries to a Li-O-2 system based on a solid polymer electrolyte (SPE-) and operated at a temperature higher than the melting point of the polymer electrolyte, where useful and most applicable conductivity values are easily achieved. The proposed SPE-based Li-O-2 cell is compared to Li-O-2 cells based on ethylene glycol dimethyl ether (glyme) through potentiodynamic and galvanostatic studies, showing a higher cell discharge voltage by 80mV and most significantly, a charge voltage lower by 400mV. The solid-state battery demonstrated a comparable discharge-specific capacity to glyme-based Li-O-2 cells when discharged at the same current density. The results shown here demonstrate that the safer PEO-based Li-O-2 battery is highly advantageous and can potentially replace the contingent of liquid-based cells upon further investigation.
机译:非水锂氧电池被认为是最先进的电源,尽管它们在几乎每个电池组件方面都面临着众多挑战。在这里,我们从传统的和基于液体的非水Li-O-2电池转变为基于固体聚合物电解质(SPE-)并在高于熔点的温度下工作的Li-O-2系统。聚合物电解质,很容易获得有用和最适用的电导率值。通过电位动力学和恒电流研究,将拟议的基于SPE的Li-O-2电池与基于乙二醇二甲醚(glyme)的Li-O-2电池进行了比较,显示出更高的电池放电电压80mV,最显着的是充电电压降低400mV。当以相同电流密度放电时,固态电池表现出与基于甘醇二甲醚的Li-O-2电池相当的放电比容量。此处显示的结果表明,更安全的基于PEO的Li-O-2电池具有很高的优势,并且在进一步研究后可以潜在地替代基于液体的电池。

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