Electrochemical Ammonia Oxidation Catalyzed by Ruthenium Complexes Bearing 4,4’-Substituted Bipyridine Dicarboxylate Ligands

Abstract We have examined electrochemical ammonia oxidation catalyzed by ruthenium complexes bearing 4,4’-substituted 2,2’-bipyridine-6,6’-dicarboxylate (bda) ligands and axial isoquinoline ligands. Bulk electrolysis revealed that a ruthenium complex bearing 4,4’-dimethyl substituted bda ligand showed a slightly higher catalytic activity than that bearing an unsubstituted ligand likely due to the enhanced stability of the complex, whereas a complex bearing 4,4’-bis(trifluoromethyl) substituted bda ligand showed much lower catalytic activity.

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Publication Details

Journal
Chemistry Letters
Published
2026-10-10
DOI
https://doi.org/10.1093/chemle/upag199
Primary Topic
Electrocatalysts for Energy Conversion
Type
article
Field-Weighted Citation Impact
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article

Electrochemical Ammonia Oxidation Catalyzed by Ruthenium Complexes Bearing 4,4’-Substituted Bipyridine Dicarboxylate Ligands

Takeshi Yoshikawa, Ken Sakata, Takashi Inagaki, 仁昭 西林 et al.
Chemistry Letters
Electrocatalysts for Energy Conversion
article

Electrochemical Ammonia Oxidation Catalyzed by Ruthenium Complexes Bearing 4,4’-Substituted Bipyridine Dicarboxylate Ligands

Takeshi Yoshikawa, Ken Sakata, Takashi Inagaki, 仁昭 西林, Shun Suginome, Shogo Kuriyama, Ryo Takabatake, Naomi Kanazawa
article en

Abstract

Abstract We have examined electrochemical ammonia oxidation catalyzed by ruthenium complexes bearing 4,4’-substituted 2,2’-bipyridine-6,6’-dicarboxylate (bda) ligands and axial isoquinoline ligands. Bulk electrolysis revealed that a ruthenium complex bearing 4,4’-dimethyl substituted bda ligand showed a slightly higher catalytic activity than that bearing an unsubstituted ligand likely due to the enhanced stability of the complex, whereas a complex bearing 4,4’-bis(trifluoromethyl) substituted bda ligand showed much lower catalytic activity.

Chemistry Letters
Toho University (JP), The University of Tokyo (JP)
Openalex Percentile: Top 34%
Electrocatalysts for Energy Conversion
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