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Bis(aryl) Tetrasulfides as Cathode Materials for Rechargeable Lithium Batteries

机译:双(芳基)四硫化物作为可充电锂电池的正极材料

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摘要

An organotetrasulfide consists of a linear chain of four sulfur atoms that could accept up to 6 e− in reduction reactions, thus providing a promising high-capacity electrode material. Herein, we study three bis(aryl) tetrasulfides as cathode materials in lithium batteries. Each tetrasulfide exhibits two major voltage regions in the discharge. The high voltage slope region is governed by the formation of persulfides and thiolates, and the low voltage plateau region is due to the formation of Li2S2/Li2S. Based on theoretical calculations and spectroscopic analysis, three reduction reaction processes are revealed, and the discharge products are identified. Lithium half cells with tetrasulfide catholytes deliver high specific capacities over 200 cycles. The effects of the functional groups on the electrochemical characteristics of tetrasulfides are investigated, which provides guidance for developing optimum aryl polysulfides as cathode materials for high energy lithium batteries.
机译:有机四硫醚由四个硫原子的线性链组成,其可以接受高达6 e-的还原反应,从而提供有前途的高容量电极材料。在此,我们研究三种双(芳基)硫化物作为锂电池中的阴极材料。每个四硫化物在放电中表现出两个主要电压区域。高压斜率区域通过形成过硫化物和硫醇酸盐来控制,低压平台区域是由于形成Li2S2 / Li 2 S的形成。基于理论计算和光谱分析,揭示了三种还原反应过程,鉴定了放电产物。具有四硫化物阴极物的锂半细胞提供超过200次循环的高比力。研究了官能团对四硫化物电化学特性的影响,为高能量锂电池的阴极材料开发最佳芳基多硫化物的引导提供了指导。

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