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First-principles study on the mechanism of lithium intercalation in cubic CoN

机译:立方凝固锂嵌入机制的第一原理研究

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Intercalation mechanism of Li into cubic Co4N4 has been investigated by the first principles calculations. Lattice constants, ratio of volume expansion, and formation energies of Li Co4N4 (x = 0, 1, 2, 3, 4) were calculated. Results indicate that Li prefers to fill the octahedral interstitial site (O-h) rather than the tetrahedral interstitial site (T-h). With the increase in intercalation Li, the ratio of volume expansion increases from 8.29% (x = 1) to 31.58% (x = 4). Ternary phase Li4Co4N4 has the most stability with the negative intercalation energy, and the corresponding theoretical specific capacity reaches 367 mA/g. Furthermore, the analysis of density of states, valence electron density distribution maps, and electron localization function (ELF) of Co4N4 and Li4Co4N4 indicates that Li intercalation enhances the electrical conductivity of Co4N4 and weakens the bonding of Co and N. Finally, Li-ion migration dynamics in the Co4N4 bulk were investigated with nudged elastic band (NEB) methods. Results show that the migration path of Li-ion is along O-h - T-h - O-h with the energy barrier of 0.44 eV.
机译:第一个原理计算已经研究了Li进入立方CO4N4的嵌入机制。晶格常数,量常数,体积膨胀比和LiCO4N4(X = 0,1,2,3,4)的形成能量。结果表明,李更喜欢填充八面体间质位(O-H)而不是四面体间质部位(T-H)。随着嵌入中的增加,体积膨胀比从8.29%(x = 1)增加至31.58%(x = 4)。三元相Li4CO4N4具有负嵌入能量最稳定,并且相应的理论特异性能力达到367mA / g。此外,CO4N4和Li4CO4N4的状态的密度,价电子密度分布图和电子定位功能(ELF)的分析表明,Li插入增强了CO4N4的电导率,削弱了CO和N的键合。最后,Li-Ion用闪烁的弹性带(NEB)方法研究了CO4N4散装中的迁移动态。结果表明,锂离子的迁移路径沿O-H - & T-H - & O-H具有0.44eV的能量屏障。

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