The sabatier principle in electrocatalysis: basics, limitations, and extensions

The Sabatier principle, which states that the binding energy between the catalyst and the reactant should be neither too strong nor too weak, has been widely used as the key criterion in designing and screening electrocatalytic materials necessary to promote the sustainability of our society. The widespread success of density functional theory (DFT) has made binding energy calculations a routine practice, turning the Sabatier principle from an empirical principle into a quantitative predictive tool. Given its importance in electrocatalysis, we have attempted to introduce the reader to the fund... Mehr ...

Verfasser: Ooka, Hideshi
Huang, Jun
Exner, Kai S.
Dokumenttyp: Wissenschaftlicher Artikel
Erscheinungsdatum: 2022
Verlag/Hrsg.: Universität Ulm
Schlagwörter: Sabatier principle / kinetics / theory / DDC 540 / Chemistry & allied sciences / Electrocatalysis / Thermodynamics / Dynamics / Elektrokatalyse / Thermodynamik / Reaktionskinetik
Sprache: Englisch
Permalink: https://search.fid-benelux.de/Record/base-26883195
Datenquelle: BASE; Originalkatalog
Powered By: BASE
Link(s) : https://doi.org/10.18725/OPARU-45294

The Sabatier principle, which states that the binding energy between the catalyst and the reactant should be neither too strong nor too weak, has been widely used as the key criterion in designing and screening electrocatalytic materials necessary to promote the sustainability of our society. The widespread success of density functional theory (DFT) has made binding energy calculations a routine practice, turning the Sabatier principle from an empirical principle into a quantitative predictive tool. Given its importance in electrocatalysis, we have attempted to introduce the reader to the fundamental concepts of the Sabatier principle with a highlight on the limitations and challenges in its current thermodynamic context. The Sabatier principle is situated at the heart of catalyst development, and moving beyond its current thermodynamic framework is expected to promote the identification of next-generation electrocatalysts. ; publishedVersion