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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Fast kinetics of Mg2+/Li+ hybrid ions in a polyanion Li3V2(PO4)(3) cathode in a wide temperature range
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Fast kinetics of Mg2+/Li+ hybrid ions in a polyanion Li3V2(PO4)(3) cathode in a wide temperature range

机译:Mg2 + / Li +杂交离子的快速动力学在宽温度范围内聚阳极Li3v2(PO4)(3)阴极

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摘要

Magnesium ion batteries (MIBs) have attracted significant research attention owing to their low cost, high energy density, and the natural abundance of magnesium. However, lack of compatible cathode materials hinders their further development. Herein, we present a magnesium-lithium hybrid ion battery (MLIB) comprising a Li3V2(PO4)(3) (LVP) cathode and magnesium metal anode, where fast reaction kinetics of Li+ ions at the LVP cathode and that of Mg2+ ions at the anode led to high reversible capacities. As a result, a rechargeable MLIB shows excellent rate performance (147.8 and 65.3 mA h g(-1) at 50 and 2500 mA g(-1) respectively) and capacity retention (99% for 200 cycles), which are the highest values among the reported hybrid batteries using lithium cathodes. To improve temperature adaptability of the designed MLIB, two different kinds of magnesium electrolytes (i.e. all-phenyl-complex and magnesium borohydride in diglyme) and inorganic lithium additives were investigated. It is found that the all-phenyl-complex along with LiCl additives can suppress the freezing of electrolytes effectively even at -40 degrees C. While, high reversible capacities of 117, 93.4, and 63.1 mA h g(-1) can be obtained at 0, -20, and -40 degrees C respectively, at a current density of 100 mA g(-1), showing a very promising prospect for low temperature applications.
机译:镁离子电池(MIBS)由于其低成本,高能量密度和镁的天然丰度而引起了显着的研究。然而,缺乏兼容的阴极材料阻碍了他们的进一步发展。在此,我们介绍一种镁 - 锂杂交离子电池(MLIB),其包含Li3V2(PO4)(3)(LVP)阴极和镁金属阳极,其中LVP阴极的Li +离子的快速反应动力学和Mg2 +离子在阳极导致高可逆容量。结果,可充电的MLIB分别显示出优异的速率性能(分别为50和2500mA g(-1)的优异速率(147.8和65.3 mA Hg(-1))和容量保持(99%,200个循环),这是最高值报告的混合电池使用锂阴极。为了提高所设计的MLIB的温度适应性,研究了两种不同种类的镁电解质(I..E.SPOL-苯基 - 复合物和DIGLYME中的硼氢化镁)和无机锂添加剂。发现全苯基 - 复合物以及LICL添加剂可以抑制即使在-40℃下有效抑制电解质的冷冻。虽然117,93.4和63.1 mA Hg(-1)的高可逆容量可以获得分别为0,-20和-40℃,电流密度为100 mA g(-1),显示出低温应用的非常有希望的前景。

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