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First-principles study of structural, electronic and Li-ion diffusion properties of N-doped LiFePO4 (010) surface

机译:N掺杂LiFePO4(010)表面的结构,电子和锂离子扩散特性的第一性原理研究

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The structural, electronic and Li-ion diffusion properties of N-doped LiFePO4 (010) surface have been investigated by first-principles calculation under the DFT + U framework. The calculated results show that the substitution of nitrogen for oxygen on the (010) surface of the LiFePO4 is energetically favored and N-substitution can significantly decrease the band gap of the LiFePO4, indicating better electronic conductive properties. The nudged elastic band (NEB) method is used to calculate the activation energy for Li-ion diffusion. It is found that for pure LiFePO4 (010) surface high intrinsic activation energy of Li-ion diffusion retards fast Li transport. However, this energy barrier can be effectively reduced by nitrogen surface modification. Our results imply that N doping on the LiFePO4 (010) surface could improve its electron conductivity and ion diffusion properties. (C) 2015 Elsevier B.V. All rights reserved.
机译:在DFT + U框架下,通过第一性原理计算研究了N掺杂的LiFePO4(010)表面的结构,电子和锂离子扩散特性。计算结果表明,在能量上有利于用LiFePO4的(010)表面上的氮代替氧,并且N取代可以显着减小LiFePO4的带隙,表明具有更好的电子导电性能。使用微动弹性带(NEB)方法来计算锂离子扩散的活化能。发现对于纯LiFePO 4(010)表面,高的Li离子扩散固有活化能阻碍了快速的Li传输。但是,该能垒可以通过氮表面改性而有效地降低。我们的结果表明,在LiFePO4(010)表面掺杂N可以改善其电子传导性和离子扩散性能。 (C)2015 Elsevier B.V.保留所有权利。

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