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Electronic Structure and Lithium Diffusion in LiAl2(OH)6Cl Studied by First Principle Calculations

机译:用第一原理计算研究LiAl2(OH)6Cl中的电子结构和锂扩散

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摘要

First-principles calculations based on the density functional theory (DFT) were carried out to study the atomic structure and electronic structure of LiAl2(OH)6Cl, the only material in the layered double hydroxide family in which delithiation was found to occur. Ab initio molecular dynamics (AIMD) simulations were used to explore the evolution of the structure of LiAl2(OH)6Cl during a thermally induced delithiation process. The simulations show that this process occurs due to the drastic dynamics of Li+ at temperatures higher than ~450 K, in which the [Al2(OH)6] host layers remain stable up to 1100 K. The calculated large value of the Li+ diffusion coefficient D, ~ 3.13 × 10 ? 5 c m 2 / s , at 500 K and the high stability of the [Al2(OH)6] framework suggest a potential technical application of the partially-delithiated Li1-xAl2(OH)6Cl1-x (0 < x < 1) as a superionic conductor at high temperatures.
机译:进行了基于密度泛函理论(DFT)的第一性原理计算,以研究LiAl2(OH)6Cl的原子结构和电子结构,LiAl2(OH)6Cl是层状双氢氧化物族中唯一发生脱锂的材料。从头算分子动力学(AIMD)模拟被用来研究LiAl2(OH)6Cl在热诱导脱锂过程中结构的演变。仿真表明,此过程是由于Li +在高于约450 K的温度下剧烈运动而发生的,其中[Al2(OH)6]主体层在1100 K以下都保持稳定。计算出的大Li +扩散系数值D〜3.13×10?在500 K下5 cm 2 / s和[Al2(OH)6]骨架的高稳定性表明,部分脱锂的Li1-xAl2(OH)6Cl1-x(0

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