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Interphase Evolution of a Lithium-Ion/Oxygen Battery

机译:锂离子/氧气电池的相间演化

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A novel lithium-ion/oxygen battery employing Pyr(14)FSI-LiTESI as the electrolyte and nanostructured LixSn-C as the anode is reported. The remarkable energy content of the oxygen cathode, the replacement of the lithium metal anode by a nanostructured stable lithium-alloying composite, and the concomitant use of nonflammable ionic liquid-based electrolyte result in a new and intrinsically safer energy storage system. The lithium-ion/oxygen battery delivers a stable capacity of 500 mAh g(-1) at a working voltage of 2.4 V with a low charge-discharge polarization. However, further characterization of this new system by electrochemical impedance spectroscopy, scanning electron microscopy, and energy-dispersive X-ray spectroscopy reveals the progressive decrease of the battery working voltage, because of the crossover of oxygen through the electrolyte and its direct reaction with the LixSn-C anode.
机译:报道了一种新颖的锂离子/氧气电池,该电池采用Pyr(14)FSI-LiTESI作为电解质,并使用纳米结构的LixSn-C作为阳极。氧阴极的显着能量含量,用纳米结构稳定的锂合金复合材料替代锂金属阳极以及不易燃的离子液体基电解质的同时使用,导致了新的本质上更安全的储能系统。锂离子/氧气电池在2.4 V的工作电压下可提供500 mAh g(-1)的稳定容量,且充放电极性低。但是,通过电化学阻抗谱,扫描电子显微镜和能量色散X射线光谱对新系统的进一步表征,揭示了电池工作电压的逐渐降低,这是由于氧气通过电解质的交叉以及与氧气的直接反应所致。 LixSn-C阳极。

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