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Electrode materials for sodium ion batteries: A cheaper solution for the energy storage

机译:用于钠离子电池的电极材料:储能的更便宜的解决方案

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The high abundance of sodium and its low cost compared to lithium renewed the high interest on sodium ion batteries as cheaper solution for electrochemical energy storage. Indeed, sodium ion batteries have recently proposed as possible candidates for stationary and mobile energy storage devices. Herein, we present two new intercalation materials, which shown excellent electrochemical features in terms of chargedischarge, reversibility, coulombic efficiency and high specific discharge capacity. The first one is the lamellar oxide material Na0.67Co2/3Ni1/9Mn2/9O2, prepared by a soft chemistry route (SolGel) crystallizes in the rhombohedral system with layered type structure. This compound offers a specific capacity of 110 mAhg−1 when cycled between 2.0 and 4.2 V vs. Na+/Na. The electrodes exhibited a good capacity retention and a coulombic efficiency exceeding 99.4%, as well as a reversible discharge capacity of 140 mAhg−1 when cycled between 2.0 and 4.5 V. The second investigated electrode material is the phosphate Na1.5Ti1.5Fe0.5(PO4)3. In addition to its benign effect on the environment, this material delivers a specific discharge capacity of 120 mAh−1 with two extraction/insertion plateaus at 2.3 V and 2.2 V. The open framework of this sample leads a high structural stability during cycling making this material a good candidate for long-term energy storage material.
机译:与锂相比,高丰度及其低成本重新对钠离子电池的高兴趣,作为电化学能量储存的更便宜的解决方案。实际上,最近钠离子电池作为静止和移动能量存储装置的可能候选者。这里,我们提出了两种新的嵌入材料,其在充电,可逆性,库仑效率和高特异性放电容量方面示出了出色的电化学特征。第一个是通过软化化学途径(Solgel)制备的层状氧化物材料Na0.67CO2 / 3NI1 / 9MN2 / 902,在具有层状型结构的菱形系统中结晶。当循环在2.0和4.2V与Na + / Na之间循环时,该化合物提供110mAhg-1的特定容量。电极良好的容量保持性,并且库仑效率超过99.4%,当循环在2.0和4.5V之间时,可逆放电容量为140mAhg-1。第二调查电极材料是磷酸盐Na1.5ti1.5fe0.5 (PO4)3。除了对环境的良性影响外,该物质还提供120 mAh-1的特定放电容量,其中两个提取/插入平台在2.3 V和2.2 V.该样品的开放框架在循环过程中导致高结构稳定性材料是长期储能材料的良好候选者。

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