Atomistic simulations of heterogeneous electrocatalysis at the center of sustainable carbon feedstocks

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초록

In the face of global warming, the electrochemical valorization of sustainable carbon feedstocks has a high potential to advance green chemistry and promote environmentally friendly practices. Computational simulations have become indispensable in shedding light on specific aspects of electrocatalytic processes. Modern techniques incorporate the effects of the electric double layer, enhancing their ability to model realistic systems. This review provides an overview and critical discussion of the latest developments. Density functional theory remains the preferred method for studying electrode reactions and interfacial effects on stationary or short-time scales. In contrast, force field-based methods excel at providing a full statistical sampling of solid-liquid interfaces. Machine learning techniques represent a critical step toward desirable multipurpose, multi-scale methods that deliver high accuracy and coupling across multiple time and length scales.

키워드

Carbon Capture And Utilization; Carbon Cycle; Sustainable Chemistry; Zero-carbon; Atomistic Simulations; Carbon Feedstock; Computational Simulation; Electrocatalytic Process; Electrochemicals; Environmentally-friendly Practices; Green-chemistry; High Potential; Shedding Light; Valorisation; Carbon Sequestration; ELECTROCHEMICAL CO2 REDUCTION; DENSITY-FUNCTIONAL THEORY; FIELD
제목
Atomistic simulations of heterogeneous electrocatalysis at the center of sustainable carbon feedstocks
저자
Ringe, Stefan; Raabe, Gabriele
DOI
10.1016/j.coelec.2025.101671
발행일
2025-06
유형
Review
저널명
Current Opinion in Electrochemistry
권
51