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首页> 外文期刊>Journal of Electrochemical Energy Conversion and Storage >Cathode Loading Effect on Sulfur Utilization in Lithium-Sulfur Battery
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Cathode Loading Effect on Sulfur Utilization in Lithium-Sulfur Battery

机译:正极负载对锂硫电池中硫利用的影响

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The lithium-sulfur (Li-S) battery is under intensive research in recent years due to its potential to provide higher energy density and lower cost than the current state-of-the-art lithium-ion battery technology. To meet cost target for transportation application, high-sulfur loading up to 8 mAh cm~(-2) is predicted by modeling. In this work, we have investigated the sulfur loading effect on the galvanostatic charge/discharge cycling performance of Li-S cells with theoretical sulfur loading ranging from 0.5 to 7.5 mAh cm~(-2). We found that the low sulfur utilization of electrodes with sulfur loading of > 3.0 mAh cm~(-2) is due to their inability to deliver capacities at the voltage plateau of 2.1 V, which corresponds to the conversion of soluble Li_2S_4 to insoluble Li_2S_2/Li_2S. This electrochemical conversion process recovers to deliver the expected sulfur utilization after several activation cycles for electrodes with sulfur loading up to 4.5 mAh cm~(-2). For electrodes with 7.0 mAh cm~(-2) loading, no sulfur utilization recovery was observed for 100 cycles. The root cause of this phenomenon is elucidated by SEM/EDS and EIS investigation. Carbon-interlayer cell design and low-rate discharge activation are demonstrated to be effective mitigation methods.
机译:锂硫(Li-S)电池由于其具有比当前最先进的锂离子电池技术更高的能量密度和更低的成本的潜力,因此近年来受到了广泛的研究。为了满足运输应用的成本目标,通过建模预测了高达8 mAh cm〜(-2)的高硫负荷。在这项工作中,我们研究了硫负载对理论硫负载范围为0.5至7.5 mAh cm〜(-2)的Li-S电池恒电流充电/放电循环性能的影响。我们发现硫负荷> 3.0 mAh cm〜(-2)的电极对硫的利用率低是由于它们无法在2.1 V的电压平稳段传递容量,这对应于可溶性Li_2S_4转化为不溶性Li_2S_2 / Li_2S。经过数次激活循环后,对于硫负载量高达4.5 mAh cm〜(-2)的电极,该电化学转化过程得以恢复以提供预期的硫利用率。对于负载为7.0 mAh cm〜(-2)的电极,在100个循环中均未观察到硫的利用率恢复。 SEM / EDS和EIS调查阐明了此现象的根本原因。碳夹层电池设计和低速放电激活被证明是有效的缓解方法。

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