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Optimized Bicompartment Two Solution Cells for Effective and Stable Operation of Li-O-2 Batteries

机译:优化的双隔室两个解决方案电池,可有效且稳定地运行Li-O-2电池

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摘要

Lithium-oxygen batteries are in fact the only rechargeable batteries that can rival internal combustion engines, in terms of high energy density. However, they are still under development due to low-efficiency and short lifetime issues. There are problems of side reactions on the cathode side, high reactivity of the Li anode with solution species, and consumption of redox mediators via reactions with metallic lithium. Therefore, efforts are made to protect/block the lithium metal anode in these cells, in order to mitigate side reactions. However, new approach is required in order to solve the problems mentioned above, especially the irreversible reactions of the redox mediators which are mandatory to these systems with the Li anode. Here, optimized bicompartment two solution cells are proposed, in which detrimental crossover between the cathode and anode is completely avoided. The Li metal anode is cycled in electrolyte solution containing fluorinated ethylene carbonate, in which its cycling efficiency is excellent. The cathode compartment contains ethereal solution with redox mediator that enables oxidation of Li2O2 at low potentials. The electrodes are separated by a solid electrolyte membrane, allowing free transport of Li ions. This approach increases cycle life of lithium oxygen cells and their energy efficiency.
机译:就高能量密度而言,锂氧电池实际上是唯一可以与内燃机媲美的可充电电池。但是,由于效率低和寿命短的问题,它们仍在开发中。存在阴极侧的副反应,锂阳极与溶液种类的高反应性以及通过与金属锂的反应消耗氧化还原介体的问题。因此,为了减轻副反应,努力保护/阻挡这些电池中的锂金属阳极。然而,为了解决上述问题,需要新的方法,特别是氧化还原介体的不可逆反应,这对于具有锂阳极的这些系统是强制性的。在此,提出了优化的双室两个溶液池,其中完全避免了阴极和阳极之间的有害交叉。锂金属阳极在含有氟化碳酸亚乙酯的电解液中循环,其循环效率极好。阴极室包含带有氧化还原介体的醚溶液,该介体溶液可在低电势下氧化Li2O2。电极由固体电解质膜隔开,从而允许自由运输锂离子。这种方法增加了锂氧电池的循环寿命及其能量效率。

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