化学
概化理论
中心(范畴论)
密度泛函理论
统计物理学
星团(航天器)
电子结构
航程(航空)
方向(向量空间)
集群扩展
要素(刑法)
计算化学
几何学
物理
量子力学
人工智能
统计
数学
材料科学
结晶学
程序设计语言
计算机科学
复合材料
法学
政治学
作者
Lin Wang,Yizhan Zhang,Kenneth James,Bin Ouyang
摘要
The center of the d-band or d-orbital of a transition metal site serves as a key electronic structure descriptor in electrocatalysis, yet its prediction across diverse material systems remains challenging, particularly for disordered multi-principal-element alloys (MPEAs). In this study, we present a general, physically interpretable model for predicting d-center values across a wide range of surfaces and compositions, including 10,680 density functional theory (DFT)-relaxed slabs and over 1.2 million d-center values. Inspired by cluster expansion theory, the model captures local coordination environments to accurately estimate d-centers, achieving a mean absolute error (MAE) of ∼0.09 eV, even when considering only the first nearest-neighbor interactions. We further demonstrate the influence of structural orientation of surface and featurization schemes for surface slabs, as well as regression methods, revealing potential for further improvements with a trade-off between model generalizability and complexity with accuracy. The resulting model offers rapid and reliable d-center estimation, enabling high-throughput screening and mechanistic interpretation in catalysis design. Additionally, the model coefficients provide a direct and accessible tool for both experimentalists and theorists to gain valuable insights into the MPEA surface electronic behavior.
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