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2D Electrides as Promising Anode Materials for Na-Ion Batteries from First-Principles Study

机译:2D电相对于第一原理研究的Na离子电池的承诺阳极材料

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Searching for suitable anodes with good performance is a key challenge for rechargeable Na-ion batteries (NIBs). Using the first-principles method, we predict that 2D nitrogen electride materials can be served as anode materials for NIBs. Particularly, we show that Ca2N meets almost all the requirements of a good NIB anode. Each formula unit of a monolayer Ca2N sheet can absorb up to four Na atoms, corresponding to a theoretical specific capacity of 1138 mAh·g~(-1). The metallic character for both pristine Ca2N and its Na intercalated state Na_xCa2N ensures good electronic conduction. Na diffusion along the 2D monolayer plane can be very fast even at room temperature, with a Na migration energy barrier as small as 0.084 eV. These properties are key to the excellent rate performance of an anode material. The average open-circuit voltage is calculated to be 0.18 V vs Na/Na~+ for the chemical stoichiometry of Na2Ca2N and 0.09 V for Na4Ca2N. The relatively low average open-circuit voltage is beneficial to the overall voltage of the cell. In addition, the 2D monolayers have very small lattice change upon Na intercalation, which ensures a good cycling stability. All these results demonstrate that the Ca2N monolayer could be an excellent anode material for NIBs.
机译:寻找具有良好性能的合适的阳极是可充电Na离子电池(NIBS)的关键挑战。使用第一原理方法,我们预测2D氮电热物质可以用作用于尖端的阳极材料。特别是,我们表明CA2N几乎满足了良好的NIB阳极的所有要求。单层Ca2N片材的每个配方单元可以吸收至四个Na原子,对应于理论特异性容量为1138mAh·g〜(-1)。丙酮Ca2n及其Na插层状态Na_xca2n的金属特性确保了良好的电子传导。沿着2D单层平面的Na扩散即使在室温下也可以非常快,Na迁移能量屏障为小于0.084eV。这些性质是阳极材料优异性能的关键。将平均开路电压计算为Na 2 Ca2N的化学化学计量和Na 4 Ca2N的0.18V Vs Na / Na +。相对低的平均开路电压有利于电池的整体电压。另外,在NA插层时,2D单层具有非常小的晶格变化,这确保了良好的循环稳定性。所有这些结果表明CA2N单层可以是用于尖端的优异的阳极材料。

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