PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 24, 2026ChemCatChem0 citationsOpen Access

Synthesis and Catalytic Performance of Co(I) Bis(phosphine) Type Complexes in the Catalytic Hydrogenation of Levulinic Acid and Furfural Biomass‐Derived Platforms

View Full Paper
ACAldahir R. CabreraAAA. ArévaloMFMarcos Flores‐Álamo

Key Points

  • This research aims to explore the synthesis and catalytic performance of cobalt bis(phosphine) complexes in the hydrogenation of biomass-derived compounds.
  • Synthesis of diphosphine cobalt (I) complexes using low-cost precursors.
  • Characterization of ligands with varying electronic and steric properties.
  • Application of cobalt complexes in the hydrogenation of levulinic acid and furfural under mild conditions.
  • Achieved 99% yield of gamma-valerolactone at 120°C and 300 psi H2.
  • Obtained 98% yield of tetrahydrofurfuryl alcohol at 100°C and 300 psi H2.
  • Demonstrated high turnover frequencies (TOFs) of 41.7 for both systems.

Abstract

ABSTRACT Biomass‐derived levulinic acid and furfural are promising alternatives to traditional fossil‐fuel‐based raw materials for applications such as biofuels, biosolvents, resins, and bioplastics. In this work, we present the synthesis and characterization of highly reactive compounds that have been reported previously but remain unexplored in biomass valorization: diphosphine cobalt (I) complexes of the type (diphosphine)CoPPh 3 Cl. These complexes are closely related to reported copper (I) and palladium (II) complexes, which have been successfully used in levulinic acid hydrogenation under impressive reaction conditions. These complexes were synthesized using commercially available, low‐cost precursors and feature bidentate ligands with different bite angles and electronic and steric parameters. We applied these cobalt complexes in the direct hydrogenation of levulinic acid and furfural to produce selectively gamma‐valerolactone (total conversion at 120°C and H 2 300 psi, 99% yield) and tetrahydrofurfuryl alcohol (total conversion at 100°C and H 2 300 psi, 98% yield), respectively, using relatively mild reaction conditions, among the mildest for nonnoble metals systems and through the in situ formation of cobalt nanoparticles which allows a high dispersion and TOFs of 41.7 for both system at its respective optimal conditions.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Cabrera et al. (2026) studied this question.

synapsesocial.com/papers/69746126bb9d90c67120b04dhttps://doi.org/10.1002/cctc.70572
Ask AI
Helpful
Bookmark
Share
View Full Paper