首页> 外文期刊>Solid state ionics >Electronic structure of spinel-type LiNi_(1/2)Ge_(3/2)O_4 and LiNi_(1/2)Mn_(3/2)O_4 as positive electrodes for rechargeable Li-ion batteries studied by first-principles density functional theory
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Electronic structure of spinel-type LiNi_(1/2)Ge_(3/2)O_4 and LiNi_(1/2)Mn_(3/2)O_4 as positive electrodes for rechargeable Li-ion batteries studied by first-principles density functional theory

机译:用第一性原理密度泛函理论研究尖晶石型LiNi_(1/2)Ge_(3/2)O_4和LiNi_(1/2)Mn_(3/2)O_4作为可再充电锂离子电池正极的电子结构

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Using first-principles density functional theory (DFT), we investigated the relationship between the electrochemical properties of the Li-containing spinel oxides LiNi_(1/2)Ge_(3/2)O_4 and LiNi_(1/2)Mn_(3/2)O_4 and their crystal and electronic structures in consideration of the possible application of these materials as positive electrodes in rechargeable Li-ion batteries. LiNi_(1/2)Mn_(3/2)O_4 is known to exhibit excellent electrochemical performance, whereas LiNi_(1/2)Ge_(3/2)O_4 is electrochemically inactive. Thus, we compared these compounds by DFT calculations. The calculated average intercalation voltage and migration energy of Li in LiNi_(1/2)Ge_(3/2)O_4 were found to be higher than those in LiNi_(1/2)Mn_(3/2)O_4, confirming the reported electrochemical inactivity of LiNi_(1/2)Ge_(3/2)O_4. A detailed study of electronic structure revealed that the strong ionic character of NiO bonds in LiNi_(1/2)Ge_(3/2)O_4 may be attributed to the inductive effect from the enhanced covalent character of GeO bonds.
机译:使用第一原理密度泛函理论(DFT),我们研究了含锂尖晶石氧化物LiNi_(1/2)Ge_(3/2)O_4和LiNi_(1/2)Mn_(3 / 2)O_4及其晶体和电子结构,考虑到这些材料可能用作可再充电锂离子电池的正极。已知LiNi_(1/2)Mn_(3/2)O_4表现出优异的电化学性能,而LiNi_(1/2)Ge_(3/2)O_4是电化学惰性的。因此,我们通过DFT计算比较了这些化合物。发现计算得出的LiNi_(1/2)Ge_(3/2)O_4中Li的平均插入电压和迁移能要高于LiNi_(1/2)Mn_(3/2)O_4中的锂,证实了所报道的电化学LiNi_(1/2)Ge_(3/2)O_4的不活泼性。对电子结构的详细研究表明,LiNi_(1/2)Ge_(3/2)O_4中Ni O键的强离子特征可能归因于Ge O键共价特征增强的诱导作用。

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