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基于氮氧化锂磷的案例研究,密度泛函理论计算中锂基固体电解质交换关联泛函的不确定性

Uncertainty of exchange-correlation functionals in density functional theory calculations for lithium-based solid electrolytes on the case study of lithium phosphorus oxynitride.

作者信息

Henkel Pascal, Mollenhauer Doreen

机构信息

Institute of Physical Chemistry, Justus-Liebig University Giessen, Giessen, Germany.

Center for Materials Research (LaMa), Justus-Liebig University Giessen, Giessen, Germany.

出版信息

J Comput Chem. 2021 Jul 5;42(18):1283-1295. doi: 10.1002/jcc.26546. Epub 2021 May 5.

DOI:10.1002/jcc.26546
PMID:33949700
Abstract

Amorphous lithium phosphorus oxynitride (LIPON) has emerged as a promising solid electrolyte for all-solid-state thin-film lithium batteries. In this context, the use of theoretical modeling to characterize, understand, or screen material properties is becoming increasingly important to complement experimental analysis or elucidate features at atomistic level that are difficult to obtain through experimental studies. Density functional theory (DFT) is the method of choice for quantum mechanical material modeling at the atomistic scale. The current state of the art represents DFT values, such as the formation or migration energies relevant for bulk phase of materials, as absolute numbers. Estimating the accuracy or fluctuation range of the different density functionals is challenging. In order to investigate the thermodynamic and kinetic properties of LIPON by DFT, an approach to describe the fluctuation range caused by the choice of the exchange-correlation (XC) functional is developed. Three different model systems were chosen to characterize various structural features of amorphous LIPON, which are distinguished by the cross-linking of the PO N -structural units. The uncertainty Ũ is introduced as a parameter describing the fluctuation range of energy values. The uncertainty approach does not determine the accuracy of DFT results, but rather a fluctuation range in the DFT results without the need for a reference value from a higher level of theory or experiment. The uncertainty was determined for both the thermodynamic Li-vacancy formation energies and the kinetic Li-vacancy migration energies in LIPON. We assume that the uncertainty approach can be applied to different material systems with different density functionals.

摘要

非晶态氮氧化锂磷(LIPON)已成为全固态薄膜锂电池中一种很有前景的固体电解质。在此背景下,使用理论建模来表征、理解或筛选材料特性对于补充实验分析或阐明通过实验研究难以获得的原子尺度特征变得越来越重要。密度泛函理论(DFT)是原子尺度量子力学材料建模的首选方法。目前的技术水平将DFT值,如与材料体相相关的形成或迁移能,表示为绝对值。估计不同密度泛函的精度或波动范围具有挑战性。为了通过DFT研究LIPON的热力学和动力学性质,开发了一种描述由交换关联(XC)泛函选择引起的波动范围的方法。选择了三种不同的模型系统来表征非晶态LIPON的各种结构特征,这些特征通过PON结构单元的交联来区分。引入不确定性Ũ作为描述能量值波动范围的参数。不确定性方法并不确定DFT结果的准确性,而是确定DFT结果中的波动范围,而无需来自更高理论或实验水平的参考值。确定了LIPON中热力学锂空位形成能和动力学锂空位迁移能的不确定性。我们假设不确定性方法可以应用于具有不同密度泛函的不同材料系统。

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