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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Transition-Metal Mixing and Redox Potentials in Li-x(M1-yM '(y))PO4 (M, M ' = Mn, Fe, Ni) Olivine Materials from First-Principles Calculations
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Transition-Metal Mixing and Redox Potentials in Li-x(M1-yM '(y))PO4 (M, M ' = Mn, Fe, Ni) Olivine Materials from First-Principles Calculations

机译:Li-x(M1-yM'(y))PO4(M,M'= Mn,Fe,Ni)橄榄石材料中的过渡金属混合和氧化还原电势的第一性原理计算

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The performance of olivine cathode materials can be improved using core/shell structures such as LiMnPO4/LiFePO4 and LiMnPO4/LiNiPO4. We use density functional theory to calculate the energetics, phase stability, and voltages of transition-metal mixing for a series of olivine phosphate materials. For LiMni(1-y)Fe(y)PO(4), LiFe1-yNiyPO4, and LiMn1-yNiyPO4, we find phase-separating tendencies with (mean-field) maximum miscibility gap temperatures of 120, 320, and 760 K respectively. At room temperature, we find that Mn is completely miscible in LiFePO4, whereas Mn solubility in LiNiPO4 is just 0.3%. Therefore, we suggest that core/shell LiMnPO4/LiNiPO4 particles could be more effective at containing Mn in the particle core and limiting Mn dissolution into the electrolyte relative to LiMnPO4/LiFePO4 particles. We calculate shifts in redox potentials for dilute transition metals, M, substituted into LixM'PO4 host materials. Unmixed LixMnPO4 exhibits a redox potential of 4.0 V, but we find that dilute Mn in a LiNiPO4 shell exhibits a redox potential of 4.3 V and therefore remains redox inactive at lower cathode potentials. We find that strain plays a large role in the redox potentials of some mixed systems (LixMn1-yFeyPO4) but not others (LixMn1-yNiyPO4).
机译:可以使用核/壳结构(例如LiMnPO4 / LiFePO4和LiMnPO4 / LiNiPO4)来改善橄榄石阴极材料的性能。我们使用密度泛函理论来计算一系列橄榄石磷酸盐材料的能量,相稳定性和过渡金属混合电压。对于LiMni(1-y)Fe(y)PO(4),LiFe1-yNiyPO4和LiMn1-yNiyPO4,我们发现(平均场)最大混溶间隙温度分别为120、320和760 K的相分离趋势。在室温下,我们发现Mn与LiFePO4完全可混溶,而Mn在LiNiPO4中的溶解度仅为0.3%。因此,我们建议,相对于LiMnPO4 / LiFePO4颗粒,核/壳型LiMnPO4 / LiNiPO4颗粒可以更有效地在颗粒核中包含Mn,并限制Mn溶解到电解质中。我们计算了替换为LixM'PO4主体材料的稀过渡金属M的氧化还原电位的变化。未混合的LixMnPO4表现出4.0 V的氧化还原电位,但我们发现LiNiPO4壳中的稀Mn表现出4.3 V的氧化还原电位,因此在较低的阴极电位下仍保持氧化还原无效。我们发现,应变在某些混合系统(LixMn1-yFeyPO4)的氧化还原电位中起很大作用,而在其他混合系统(LixMn1-yNiyPO4)的氧化还原电位中却起着很大的作用。

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