Flash Communication: Transfer Hydrogenation of Formic Acid to Methanol

Abstract An alternative route for the reductive conversion of formic acid to methanol via transfer hydrogenation (FATH) reaction is demonstrated. The FATH reaction is catalyzed by “N-heterocyclic carbene–pyridine–benzimidazolato”-based CNN pincer ligand-bound Ru complexes employing easily available alkali metal hydroxides and a renewable (bio)alcohol, ethylene glycol as the hydrogen donor. Unlike formic acid disproportionation where only one molecule of methanol is obtained from three molecules of HCOOH, the reported transfer hydrogenation route offers one molecule of methanol from one molecule of HCOOH, thus maintaining a better formic acid economy.

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Publication Details

Journal
Organometallics
Published
2026-10-09
DOI
https://doi.org/10.1021/acs.organomet.6c00330
Primary Topic
Carbon dioxide utilization in catalysis
Type
article
Field-Weighted Citation Impact
0.00
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article

Flash Communication: Transfer Hydrogenation of Formic Acid to Methanol

Ritu Bhardwaj, Joyanta Choudhury, Abhishek Kumar
Organometallics
Carbon dioxide utilization in catalysis
article

Flash Communication: Transfer Hydrogenation of Formic Acid to Methanol

Ritu Bhardwaj, Joyanta Choudhury, Abhishek Kumar
article en

Abstract

Abstract An alternative route for the reductive conversion of formic acid to methanol via transfer hydrogenation (FATH) reaction is demonstrated. The FATH reaction is catalyzed by “N-heterocyclic carbene–pyridine–benzimidazolato”-based CNN pincer ligand-bound Ru complexes employing easily available alkali metal hydroxides and a renewable (bio)alcohol, ethylene glycol as the hydrogen donor. Unlike formic acid disproportionation where only one molecule of methanol is obtained from three molecules of HCOOH, the reported transfer hydrogenation route offers one molecule of methanol from one molecule of HCOOH, thus maintaining a better formic acid economy.

Organometallics
Indian Institute of Science Education and Research, Bhopal (IN)
Openalex Percentile: Top 26%
Carbon dioxide utilization in catalysis
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