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Effects of Al-doping on the stabilization of monoclinic LiMnO2

机译:铝掺杂对单斜晶LiMnO2稳定性的影响

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Electronic structures of monoclinic LiMnO2 and LiMn0.9375Al0.0625O2 with ferromagnetic (FM) and antiferromagnetic (AF) ordering have been investigated by ab initio calculation within spin-polarized generalized gradient approximation method. An Al-doping induced complicated AF configuration has been calculated to be the ground state, which suggests a robust Al-doping effect on the magnetic and electronic structures of the monoclinic LiMnO2. The calculated Mulliken population analyses and partial density of states of Mn-3d and O-2p reveal that a single Al dopant stabilizes its six nearest-neighbor Mn ions in their respective octahedral sites, thereby hindering the migration of Mn ions into the interlayer Li sites during the Li intercalation-deintercalation and therefore improving both the structural stability and the electrochemical performance of the material. Additionally, it is found Out that the Al-doping can decrease the JT effect and increase the intercalation voltage. The Al-doping-induced negative formation energy indicates that 6.25% Mn ions in monoclinic LiMnO2 can be Substituted stably by Al ions. to which the equilibrium but not metastable phase of monoclinic LiMn0.9375Al0.0625O2 can be attributed. (C) 2006 Elsevier Inc. All rights reserved.
机译:在自旋极化广义梯度近似方法中,从头算研究了具有铁磁(FM)和反铁磁(AF)有序的单斜LiMnO2和LiMn0.9375Al0.0625O2的电子结构。 Al掺杂引起的复杂的AF构型已被计算为基态,这表明Al掺杂对单斜LiMnO2的磁性和电子结构有很强的影响。计算得出的Mulliken种群分析和Mn-3d和O-2p态的部分密度表明,单个Al掺杂剂可在其各自的八面体位点稳定其六个最邻近的Mn离子,从而阻碍Mn离子迁移到层间Li位置在锂嵌入-脱嵌过程中,因此改善了材料的结构稳定性和电化学性能。另外,发现Al掺杂可以降低JT效应并增加嵌入电压。 Al掺杂引起的负形成能表明单斜LiMnO2中的6.25%Mn离子可以被Al离子稳定取代。可以归因于单斜LiMn0.9375Al0.0625O2的平衡而不是亚稳定相。 (C)2006 Elsevier Inc.保留所有权利。

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