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A Synergistic Na-Mn-O Composite Cathodes for High-Capacity Na-Ion Storage

机译:用于高容量钠离子存储的协同Na-Mn-O复合阴极

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Searching for new-type cathodes to enhance the capacity of Na-ion batteries is one of the hot spots in energy storage systems. Many sodium insertion transition metal oxides, i.e., Na-Mn-O compounds, are intensively studied owing to their high voltage, abundant resources, and low toxicity. However, its relatively low capacity greatly limits its application. Here, a new synergistic composite, 0.44Na(4)Mn(2)O(5)center dot 0.56Na(0.7)MnO(2), is developed by a feasible method of organic-acid-assisted drying and heat treatment. This synergistic composite cathode delivers a reversible sodium storage capacity as high as 278.0 mAh g(-1) and stable framework structure due to the synergistic effect. It is achieved by the synergistic effect of high capacity Na4Mn2O5 with multiple Na+ ions insert/extract sites and stable Na0.7MnO2 with layered structure. Even when tested at a high mass loading of 7.42 mg cm(-2), this composite cathode demonstrates stable cycling over 400 cycles for sodium storage. Moreover, when coupled with hard carbon anode, Na-ion full battery delivers excellent charge/discharge performance with capacity retention of 84.0%, showing great application potential in the large-scale energy storage field.
机译:寻找新型阴极以增强Na离子电池的容量是储能系统中的热点之一。许多钠插入过渡金属氧化物,即Na-Mn-O化合物,由于其高电压,丰富的资源和低毒性而被广泛研究。但是,其相对较低的容量极大地限制了其应用。在这里,一种新的协同复合材料0.44Na(4)Mn(2)O(5)中心点0.56Na(0.7)MnO(2),是通过一种可行的有机酸辅助干燥和热处理方法开发的。这种协同复合阴极可提供高达278.0 mAh g(-1)的可逆钠存储容量,并由于协同效应而具有稳定的骨架结构。它是通过具有多个Na +离子插入/提取位点的高容量Na4Mn2O5和具有分层结构的稳定Na0.7MnO2的协同作用而实现的。即使在7.42 mg cm(-2)的高质量负载下进行测试时,该复合阴极在钠存储的400个循环中仍显示出稳定的循环。此外,与硬碳阳极结合使用时,Na离子全电池具有出色的充放电性能,容量保持率为84.0%,在大规模储能领域显示出巨大的应用潜力。

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