声子
凝聚态物理
材料科学
重整化
度量(数据仓库)
电子
电介质
联轴节(管道)
带隙
物理
量子力学
计算机科学
光电子学
数据库
冶金
作者
Anubhab Haldar,Quentin Clark,Marios Zacharias,Feliciano Giustino,Sahar Sharifzadeh
出处
期刊:Physical Review Materials
[American Physical Society]
日期:2024-10-11
卷期号:8 (10)
标识
DOI:10.1103/physrevmaterials.8.l101001
摘要
We utilize first-principles theory to investigate the role of electron-phonon interactions within a dataset of monolayer materials. Using density functional theory to describe excited-state transitions and the special displacement method to describe the role of phonons, we analyze the relationship between simple physical observables and electron-phonon coupling strength. For over 100 materials, we compute the band gap renormalization due to zero-point vibrational (ZPR) motion as a measure of electron-phonon interactions and train a machine learning model based on physical parameters. We demonstrate that the strength of electron-phonon interactions is highly dependent on the band gap, dielectric constant, and degree of ionicity, all of which can be physically justified. We then apply this model to 1302 2D materials, predicting the ZPR, which for five randomly selected materials tested agree well with the first-principles predictions. This work provides an approach for quantitatively predicting the ZPR as a measure of electron-phonon interactions in 2D materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI