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A monoclinic polymorph of sodium birnessite for ultrafast and ultrastable sodium ion storage

机译:水钠锰矿的单斜晶型,用于超快和超稳定的钠离子存储

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Sodium transition metal oxides with layered structures are attractive cathode materials for sodium-ion batteries due to their large theoretical specific capacities. However, these layered oxides suffer from poor cyclability and low rate performance because of structural instability and sluggish electrode kinetics. In the present work, we show the sodiation reaction of Mn3O4 to yield crystal water free NaMnO2?y?δ(OH)2y, a monoclinic polymorph of sodium birnessite bearing Na/Mn(OH)8 hexahedra and Na/MnO6 octahedra. With the new polymorph, NaMnO2?y?δ(OH)2y exhibits an enlarged interlayer distance of about 7??, which is in favor of fast sodium ion migration and good structural stability. In combination of the favorable nanosheet morphology, NaMn2?y?δ(OH)2y cathode delivers large specific capacity up to 211.9?mAh?g–1, excellent cycle performance (94.6% capacity retention after 1000 cycles), and outstanding rate capability (156.0?mAh?g–1 at 50?C). This study demonstrates an effective approach in tailoring the structural and electrochemical properties of birnessite towards superior cathode performance in sodium-ion batteries.
机译:具有层状结构的钠过渡金属氧化物由于其大的理论比容量而成为钠离子电池的有吸引力的阴极材料。然而,由于结构的不稳定性和缓慢的电极动力学,这些层状氧化物具有差的循环性和低倍率性能。在目前的工作中,我们显示了Mn3O4的固溶反应,生成无结晶水的NaMnO2?y?δ(OH)2y,这是含有Na / Mn(OH)8六面体和Na / MnO6八面体的水钠锰矿的单斜晶型。对于新的多晶型物,NaMnO 2·γγδ(OH)2·y表现出增大的层间距离约7 -6,这有利于钠离子快速迁移和良好的结构稳定性。结合良好的纳米片形态,NaMn2?y?δ(OH)2y阴极可提供高达211.9?mAh?g-1的大比容量,出色的循环性能(1000次循环后的容量保持率为94.6%)和出色的倍率性能(在50°C下为156.0?mAh?g–1)。这项研究证明了一种有效的方法,可以调整钠锰矿的结构和电化学性能,使其在钠离子电池中具有优异的阴极性能。

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