拉曼光谱
工作流程
计算
谱线
计算机科学
集合(抽象数据类型)
吞吐量
计算科学
表征(材料科学)
声子
计算物理学
化学
生物系统
数据挖掘
材料科学
数据库
算法
物理
纳米技术
光学
生物
电信
凝聚态物理
程序设计语言
无线
天文
作者
Mohammad Bagheri,Hannu‐Pekka Komsa
标识
DOI:10.1038/s41597-023-01988-5
摘要
Raman spectroscopy is a widely-used non-destructive material characterization method, which provides information about the vibrational modes of the material and therefore of its atomic structure and chemical composition. Interpretation of the spectra requires comparison to known references and to this end, experimental databases of spectra have been collected. Reference Raman spectra could also be simulated using atomistic first-principles methods but these are computationally demanding and thus the existing databases of computational Raman spectra are fairly small. In this work, we developed an optimized workflow to calculate the Raman spectra more efficiently compared to existing approaches. The workflow was benchmarked and validated by comparison to experiments and previous computational methods for select technologically relevant material systems. Using the workflow, we performed high-throughput calculations for a large set of materials (5099) belonging to many different material classes, and collected the results to a database. Finally, the contents of database are analyzed and the calculated spectra are shown to agree well with the experimental ones.
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