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Predictive model of surface adsorption in dissolution on transition metals and alloys

2021/08/25 by Bo Li, Li, Bo, Wang Gao +3
Energy · Engineering · Materials Science · #Catalytic Processes in Materials Science #Electrocatalysts for Energy Conversion #FOS: Physical sciences #High-Temperature Coating Behaviors #Materials Science (cond-mat.mtrl-sci)

paper · pdf · doi:10.48550/arxiv.2108.11017

openalex publication_date 2021/08/25 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/01

Abstract

Surface adsorption, which is often coupled with surface dissolution, is generally unpredictable on alloys due to the complicated alloying and dissolution effects. Herein, we introduce the electronic gradient and cohesive properties of surface sites to characterize the effects of alloying and dissolution. This enables us to build a predictive model for the quantitative determination of the adsorption energy in dissolution, which holds well for transition metals, near-surface alloys, binary alloys, and high-entropy alloys. Furthermore, this model uncovers a synergistic mechanism between the d-band upper-edge ratio, d-band width and s-band depth in determining the alloying and dissolution effects on adsorption. Our study not only provides fundamental mechanistic insights into surface adsorption on alloys but also offers a long-sought tool for the design of advanced alloy catalysts.

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