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首页> 外文期刊>Journal of power sources >Ultrasound-assisted synthesis of sodium powder as electrode additive to improve cycling performance of sodium-ion batteries
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Ultrasound-assisted synthesis of sodium powder as electrode additive to improve cycling performance of sodium-ion batteries

机译:超声辅助合成钠粉作为电极添加剂以改善钠离子电池的循环性能

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Excessive solid electrolyte interphase (SEI) buildup in the formation cycles or later cycles consumes electrolyte, depletes alkaline ion availability, and increases cell polarization; the reduction in the amount of available alkaline ions upon cycling often causes low capacity and poor capacity retention in full cells. To compensate the Na loss from SEI formation, we have developed a sodium-powder based pre-sodiation technique that could potentially be applied to both anode and cathode materials with minimal modification to conventional battery making process. The synthesis of sodium powder is accomplished via ultrasonic dispersion of molten sodium metal in mineral oil. When suspended in hexane, the sodium powder can be easily applied onto electrodes as pre-sodiation additive. In the half cell study with glucose derived carbon (GC1100), pre-sodiation decreases the initial open circuit cell potential (similar to 1 V drop) and reduces the first cycle irreversible Coulombic efficiency (from 19.3% to 8%). In the full cell study with GC1100 and NaCr0(2,) pre-sodiation leads to similar to 10% improvement in cycling capacity and similar to 5% increase in energy density. Decreased cell polarization is also observed in pre-sodiated cells.
机译:在形成周期或以后的周期中,过多的固体电解质相间(SEI)堆积会消耗电解质,耗尽碱性离子的利用率,并增加电池极化。循环时可用碱金属离子数量的减少通常会导致容量不足,并且在完整电池中的容量保留能力很差。为了补偿SEI形成过程中的Na损失,我们开发了一种基于钠粉的预沉淀技术,该技术可在不对常规电池制造工艺进行最小改动的情况下,应用于阳极和阴极材料。钠粉的合成是通过将熔融钠金属超声分散在矿物油中完成的。将钠粉悬浮在己烷中后,可以轻松地将其作为预沉淀添加剂应用到电极上。在使用葡萄糖衍生碳的半电池研究中(GC1100),预沉淀可降低初始开路电势(类似于1 V压降),并将第一循环不可逆库仑效率(从19.3%降低至8%)。在使用GC1100和NaCr0(2)进行的全细胞研究中,预沉淀处理可导致循环容量提高约10%,能量密度提高5%。在预先形成的细胞中也观察到细胞极化减少。

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