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Ligand Hybridization for Electro‐reforming Waste Glycerol into Isolable Oxalate and Hydrogen

Jianxiang Wu, Xiang Liu, Yaming Hao, Shaoyan Wang, Ran Wang, Wei Du, Shuangshuang Cha, Xian‐Yin Ma, Xuejing Yang, Ming Gong

2023Angewandte Chemie15 citationsDOIOpen Access PDF

Abstract

Abstract The electro‐reforming of glycerol is an emerging technology of simultaneous hydrogen production and biomass valorization. However, its complex reaction network and limited catalyst tunability restrict the precise steering toward high selectivity. Herein, we incorporated the chelating phenanthrolines into the bulk nickel hydroxide and tuned the electronic properties by installing functional groups, yielding tunable selectivity toward formate (max 92.7 %) and oxalate (max 45.3 %) with almost linear correlation with the Hammett parameters. Further combinatory study of intermediate analysis and various spectroscopic techniques revealed the electronic effect of tailoring the valence band that balances between C−C cleavage and oxidation through the key glycolaldehyde intermediate. A two‐electrode electro‐reforming setup using the 5‐nitro‐1,10‐phenanthroline‐nickel hydroxide catalyst was further established to convert crude glycerol into pure H 2 and isolable sodium oxalate with high efficiency.

Topics & Concepts

OxalateChemistryCatalysisSelectivityFormateHydrotalciteHydroxideHydrogen productionNickelInorganic chemistryLigand (biochemistry)HydrogenSodium formateCombinatorial chemistryOrganic chemistryReceptorBiochemistryElectrocatalysts for Energy ConversionCatalysis for Biomass ConversionCO2 Reduction Techniques and Catalysts
Ligand Hybridization for Electro‐reforming Waste Glycerol into Isolable Oxalate and Hydrogen | Litcius