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A class of liquid anode for rechargeable batteries with ultralong cycle life

机译:一类用于超长循环寿命的可充电电池液体阳极

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Low cost, highly efficient and safe devices for energy storage have long been desired in our society. Among these devices, electrochemical batteries with alkali metal anodes have attracted worldwide attention. However, the practical application of such systems is limited by dendrite formation and low cycling efficiency of alkali metals. Here we report a class of liquid anodes fabricated by dissolving sodium metal into a mixed solution of biphenyl and ethers. Such liquid anodes are highly safe and have a low redox potential of 0.09?V versus sodium, exhibiting a high conductivity of 1.2 × 10?2?S?cm?1. When coupled with polysulfides dissolved in dimethyl sulfoxide as the cathode, a battery is demonstrated to sustain over 3,500 cycles without measureable capacity loss at room temperature. This work provides a base for exploring a family of liquid anodes for rechargeable batteries that potentially meet the requirements for grid-scale electrical energy storage.
机译:在我们的社会中长期以来一直需要低成本,高效和安全的能量存储设备。在这些装置中,具有碱金属阳极的电化学电池已引起全世界的关注。但是,这种系统的实际应用受到枝晶形成和碱金属循环效率低的限制。在这里,我们报告一类通过将钠金属溶解在联苯和醚的混合溶液中制成的液态阳极。这种液体阳极是高度安全的,并且相对于钠具有低的0.09?V的氧化还原电位,表现出1.2×10 ?2 ?S?cm ?1 的高电导率。当与溶解在二甲基亚砜中的多硫化物偶联作为阴极时,电池在室温下可承受3500次循环,而容量却没有可测量的损失。这项工作为探索可充电电池的液体阳极系列奠定了基础,该系列阳极可满足电网规模电能存储的要求。

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