首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Benefits of N for O substitution in polyoxoanionic electrode materials: a first principles investigation of the electrochemical properties of Li2FeSiO_(4-y)N_y, (y = 0, 0.5, 1)
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Benefits of N for O substitution in polyoxoanionic electrode materials: a first principles investigation of the electrochemical properties of Li2FeSiO_(4-y)N_y, (y = 0, 0.5, 1)

机译:N取代聚氧阴离子电极材料中O的益处:Li2FeSiO_(4-y)N_y(y = 0,0.5,1)的电化学性质的第一原理研究

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摘要

First principles calculations have been used to investigate the effect of N for O substitution on the electrochemical properties of Li2FeSiO4. Within the Li2FeSiO4 structure, hypothetical models of the N-substituted Li2FeSiO3N and Li2FeSiO_(3.5)N_(0.5) have been analyzed. The computational results indicate that the lithium deinsertion voltage associated to the Fe~(3+)/Fe~(4+) redox couple can be decreased by N substitution (4.86 V in Li2FeSiO4, 4.7 V in Li2FeSiO_(3.5)N~(0.5) and 4.1 V in Li2FeSiO3N). The high theoretical specific capacity of Li2FeSiO4 (330 mA h g~(-1)) could be retained in N-substituted silicates thanks to the oxidation of N~(3-) anions. The redox activity of N ions is observed in a voltage range of ca. 3.5-4.2 V. In the light of the potential benefits of N substitution for O experimental work is encouraged, in particular to investigate the reversibility and overpotential of the N redox reaction.
机译:第一原理计算已用于研究N取代O对Li2FeSiO4电化学性能的影响。在Li2FeSiO4结构中,分析了N-取代的Li2FeSiO3N和Li2FeSiO_(3.5)N_(0.5)的假设模型。计算结果表明,通过N取代可以降低与Fe〜(3 +)/ Fe〜(4+)氧化还原对相关的锂去插入电压(Li2FeSiO4中为4.86 V,Li2FeSiO_(3.5)N〜(0.5中为4.7 V) )和4.1 V(在Li2FeSiO3N中)。由于N〜(3-)阴离子的氧化,Li2FeSiO4的高理论比容量(330 mA h g〜(-1))可以保留在N-取代的硅酸盐中。在约200伏的电压范围内观察到N离子的氧化还原活性。 3.5-4.2 V.鉴于N取代O的潜在好处,鼓励开展实验工作,尤其是研究N氧化还原反应的可逆性和超电势。

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