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The electronic structure and band gap of LiFePO4 and LiMnPO4

机译:LiFePO4和LiMnPO4的电子结构和带隙

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Materials with the olivine LixMPO4 structure form an important new class of materials for rechargeable Li batteries. There is significant interest in their electronic properties because of the importance of electronic conductivity in batteries for high-rate applications. The density of states of LixMPO4 (x = 0, 1 and M = Fe, Mn) has been determined with the ab initio generalized gradient approximation (GGA) + U method, appropriate for these correlated electron systems. Computed results are compared with the optical gap of LiFePO4, as measured using UV-Vis-NIR diffuse reflectance spectroscopy. The results obtained from experiment (3.8-4.0 eV) and GGA + U computations (3.7 eV) are in very good agreement. However, standard GGA, without the same level of treatment of electron correlation, is shown to make large errors in predicting the electronic structure. It is argued that olivines are likely to be polaronic conductors with extrinsically determined carrier levels and that their electronic conductivity is therefore not simply related to the band gap. (C) 2004 Elsevier Ltd. All rights reserved.
机译:具有橄榄石LixMPO4结构的材料构成了可充电锂电池的重要一类新材料。由于高速率应用的电池中电子导电性的重要性,因此对它们的电子性能非常感兴趣。 LixMPO4(x = 0,1和M = Fe,Mn)的态密度已通过从头开始的广义梯度近似(GGA)+ U方法确定,适用于这些相关的电子系统。将计算结果与LiFePO4的光学间隙进行比较,该光学间隙是使用UV-Vis-NIR漫反射光谱法测量的。从实验(3.8-4.0 eV)和GGA + U计算(3.7 eV)获得的结果非常吻合。但是,在没有相同水平的电子相关性处理的情况下,标准GGA被证明在预测电子结构时会产生较大的误差。有人认为,橄榄石可能是具有外在决定的载流子能级的极化子导体,因此它们的电子电导率不仅仅与带隙有关。 (C)2004 Elsevier Ltd.保留所有权利。

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