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Highly selective and efficient solvent-free transformation of bio-derived levulinic acid to γ-valerolactone by Ru(II) arene catalyst precursors

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Figshare2020-05-05 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Highly_selective_and_efficient_solvent-free_transformation_of_bio-derived_levulinic_acid_to_-valerolactone_by_Ru_II_arene_catalyst_precursors/12059475
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The selective and efficient solvent-free hydrogenation of bio-based levulinic acid (LA) to γ-valerolactone (GVL)was achieved with new pyridylimine ruthenium(II) complexes as catalyst precursors. The hydrogenation reactionswere performed in the presence of formic acid as hydrogen source using a catalyst loading as low as 0.1 mol% with potassium hydroxide or triethylamine (Et3N). 4-Hydroxyvaleric acid (HVA) was produced only whenKOH was used, whereas reactions involving Et3N were selective to GVL. At 150 °C,>96% LA conversions wereachieved with 100% GVL selectivity. Recyclability of catalyst precursors was demonstrated by running threeconsecutive reactions where 100% conversion and selectivity was maintained. In-situ NMR studies show thathydrogen gas is formed by the decomposition of formic acid to carbon dioxide and hydrogen. Ru-hydride specieshave been detected, by 1H NMR, and are believed to be the catalytically active species, and a mechanism of thereaction has been proposed.
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2020-05-05
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