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May 9, 2026Angewandte Chemie International Edition1 citationsOpen Access

The Intricate Sabatier Optimality of Anion Electroreduction and Its Consequences for Nitrate Reduction

MSMattia SalomoneIKIoannis KatsounarosFCFederico Calle‐Vallejo

Key Points

  • This research aims to revise the Sabatier principle for charged reactants, specifically anion electroreduction and its implications for nitrate reduction.
  • Analyzed the effects of specific anion adsorption on free energy diagrams and volcano plots.
  • Observed the differences in the electroreduction of charged versus neutral species.
  • Illustrated findings with examples related to nitrate electroreduction on transition metals.
  • Free-energy diagrams for anion electroreduction show drastic changes compared to neutral species.
  • Volcano plots become mobile, indicating potential-dependent binding strength.
  • Findings suggest that nitrate electroreduction is a suboptimal process for wastewater treatment, warranting further improvements.

Abstract

The Sabatier principle is arguably among the most extended concepts in catalysis. It molded the idea of optimality as a balance between two undesired extremes of strong and weak binding. In electrocatalysis, Sabatier-type volcano plots have had tremendous success for reactions with coupled proton-electron transfers involving neutral reactants. However, we show here that the concept ought to be revised when charged reactants are involved. Specifically, we analyze anion electroreduction mediated by specific anion adsorption. We observe drastic changes in free-energy diagrams and volcano plots compared to the reduction of neutral species: Specific adsorption is destabilized by the potential, the subsequent hydrogenation is potential-independent, and the next step is stabilized by the potential. Consequently, volcano plots become mobile, such that strong and weak binding turn into potential-dependent notions. We illustrate these intriguing phenomena for nitrate electroreduction on transition metals, a promising yet currently suboptimal electrocatalytic process for wastewater treatment.

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Cite This Study

Salomone et al. (2026) studied this question.

synapsesocial.com/papers/69fed17eb9154b0b82878cf5https://doi.org/10.1002/anie.3566312
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