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Intercalation of Mg-ions in layered V2O5 cathode materials for rechargeable Mg-ion batteries

机译:镁离子在可充电镁离子电池的层状V2O5正极材料中的嵌入

摘要

The development of functioning rechargeable Mg-ion batteries is still in its early stage, and a coarse screening of suitable cathode materials is still on-going. Within the intercalation-type cathodes, layered crystalline materials are of high interest as they are known to perform well in Li-ion intercalation batteries and are also increasingly being explored for Na-ion batteries. Here, we present an investigation of the layered material orthorhombic V2O5, which is a classical candidate for an ion-intercalation material having a high theoretical capacity1. We present discharge-curves for the insertion of magnesium, and investigate the degradation as a function of cycle number. Furthermore, in an attempt to separate degradation associated with the cathode and the anode, effects of exchanging anode and electrolyte were investigated. Hereby, up to 50% of the cathode capacity was regained on the subsequent discharge. This indicates that the degradation is highly associated with formation of ion-blocking layers on the anode.
机译:功能性可再充电镁离子电池的开发仍处于早期阶段,对合适阴极材料的粗筛仍在进行中。在层间型阴极内,层状晶体材料引起人们的极大兴趣,因为它们在锂离子层间电池中表现良好,并且也越来越多地用于钠离子电池。在这里,我们对层状材料正交晶V2O5进行了研究,它是具有高理论容量的离子嵌入材料的经典候选材料1。我们提出了镁插入的放电曲线,并研究了降解与循环数的关系。此外,为了分离与阴极和阳极相关的降解,研究了交换阳极和电解质的效果。因此,在随后的放电中恢复了高达50%的阴极容量。这表明该降解与阳极上离子阻挡层的形成高度相关。

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