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Creating New Battery Configuration Associated with the Functions of Primary and Rechargeable Lithium Metal Batteries

机译:创建与初级和可充电锂金属电池功能相关的新电池配置

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Although the primary lithium/fluorinated graphite battery has a high energy density of 3725 Wh kg(-1), its complete irreversibility based on a conversion reaction between Li and fluorinated graphite hampers wide applications in rechargeable systems. Here, a new rechargeable three-electrode battery configuration involving lithium, fluorinated graphite, and sulfur electrodes is developed, in which the initial middle-fluorinated graphite cathode can be electrochemically transformed into a hybrid lithium anode, showing a low overpotential (12 mV), long cycle life (2000 h) and good deep stripping/plating features. This rechargeable battery delivers a high gravimetric energy density of 507.7 Wh kg(-1) on the basis of the total mass of the three-electrode materials. Moreover, the excessive consumption of lithium in the system can be in situ replenished, further lengthening the lifespan.
机译:尽管初级锂/氟化石墨电池具有3725WH kg(-1)的高能量密度,但基于Li和氟化石墨泵的转化反应在可再充电系统中的应用范围内的完全不可逆性。这里,开发了一种涉及锂,氟化石墨和硫电极的新的可再充电三电极电池配置,其中初始中氟化石墨阴极可以电化学转化成杂交锂阳极,显示出低过电位(12mV),长循环寿命(2000小时)和良好的深层剥离/电镀功能。基于三电极材料的总质量,该可充电电池提供高重量的重量能量密度为507.7WHKG(-1)。此外,系统中锂的过度消耗可以原位补充,进一步延长寿命。

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