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Li(V0.5Ti0.5)S2 as a 1 V lithium intercalation electrode

机译:Li(V0.5Ti0.5)S2作为1 V锂嵌入电极

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摘要

Graphite, the dominant anode in rechargeable lithium batteries, operates at ∼0.1 V versus Li+/Li and can result in lithium plating on the graphite surface, raising safety concerns. Titanates, for example, Li4Ti5O12, intercalate lithium at∼1.6 V versus Li+/Li, avoiding problematic lithium plating at the expense of reduced cell voltage. There is interest in 1 V anodes, as this voltage is sufficiently high to avoid lithium plating while not significantly reducing cell potential. The sulfides, LiVS2 and LiTiS2, have been investigated as possible 1 V intercalation electrodes but suffer from capacity fading, large 1st cycle irreversible capacity or polarization. Here we report that the 50/50 solid solution, Li1+x(V0.5Ti0.5)S2, delivers a reversible capacity to store charge of 220 mAhg−1 (at 0.9 V), 99% of theoretical, at a rate of C/2, retaining 205 mAhg−1 at C-rate (92% of theoretical). Rate capability is excellent with 200 mAhg−1 at 3C. C-rate is discharge in 1 h. Polarization is low, 100 mV at C/2. To the best of our knowledge, the properties/performances of Li(V0.5Ti0.5)S2 exceed all previous 1 V electrodes.
机译:石墨是可再充电锂电池中的主要阳极,相对于Li + / Li,其工作电压为〜0.1 V,并可能导致石墨表面镀锂,从而增加了安全隐患。钛酸盐,例如Li4Ti5O12,相对于Li + / Li,以约1.6 lithiumV嵌入锂,从而避免了镀锂问题,但以降低电池电压为代价。 1 V阳极引起了人们的兴趣,因为该电压足够高,可以避免镀锂,而不会显着降低电池电势。硫化物LiVS2和LiTiS2已被研究为可能的1 V嵌入电极,但存在容量衰减,第一循环不可逆容量大或极化的问题。在这里,我们报告说50/50的固溶体Li1 + x(V0.5Ti0.5)S2具有可逆的存储容量,可存储220 mAhg -1 (在0.9 chargeV时)的电荷,为99%理论值,以C / 2的速率,以C速率(理论值的92%)保留205 mAhg -1 。在3C下具有200 mAhg -1 的速率能力非常出色。 C速率在1 h内放电。极化很低,在C / 2时为100 mV。据我们所知,Li(V0.5Ti0.5)S2的特性/性能超过了以前所有的1 V电极。

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