Department of Chemical Engineering, Columbia University, New York, New York, 10027, USA.
Computational Science Initiative, Brookhaven National Laboratory, Upton, New York, 11973, USA.
Sci Data. 2023 Jun 2;10(1):349. doi: 10.1038/s41597-023-02262-4.
X-ray absorption spectroscopy (XAS) is a premier technique for materials characterization, providing key information about the local chemical environment of the absorber atom. In this work, we develop a database of sulfur K-edge XAS spectra of crystalline and amorphous lithium thiophosphate materials based on the atomic structures reported in Chem. Mater., 34, 6702 (2022). The XAS database is based on simulations using the excited electron and core-hole pseudopotential approach implemented in the Vienna Ab initio Simulation Package. Our database contains 2681 S K-edge XAS spectra for 66 crystalline and glassy structure models, making it the largest collection of first-principles computational XAS spectra for glass/ceramic lithium thiophosphates to date. This database can be used to correlate S spectral features with distinct S species based on their local coordination and short-range ordering in sulfide-based solid electrolytes. The data is openly distributed via the Materials Cloud, allowing researchers to access it for free and use it for further analysis, such as spectral fingerprinting, matching with experiments, and developing machine learning models.
X 射线吸收光谱(XAS)是一种用于材料特性描述的主要技术,它提供了关于吸收原子局部化学环境的关键信息。在这项工作中,我们根据 Chem. Mater. 34, 6702 (2022) 中报道的原子结构,为结晶和非晶态的磷酸锂硫材料的硫 K 边 XAS 光谱开发了一个数据库。XAS 数据库基于使用电子激发和核孔伪势方法在维也纳从头算模拟包中进行的模拟。我们的数据库包含 66 个结晶和玻璃结构模型的 2681 个 S K 边 XAS 光谱,是迄今为止用于玻璃/陶瓷磷酸锂硫的最大的第一性原理计算 XAS 光谱集合。该数据库可用于根据硫在基于硫化物的固体电解质中的局部配位和短程有序,将 S 光谱特征与不同的 S 物种相关联。该数据通过 Materials Cloud 公开分发,允许研究人员免费访问和进一步分析,如光谱特征分析、与实验匹配和开发机器学习模型。