1453279-75-8Relevant academic research and scientific papers
One-pot synthesis of pyrrolidones from levulinic acid and amines/nitroarenes/nitriles over the Ir-PVP catalyst
Chaudhari, Chandan,Nagaoka, Katsutoshi,Nishida, Yoshihide,Sato, Katsutoshi,Shiraishi, Masaya
, p. 7760 - 7764 (2020)
The synthesis of pyrrolidones via reductive amination of levulinic acid with aniline was examined over polypyrrolidone-stabilized metal nanoparticle catalysts. Among them, Ir metal was the most effective and applicable for the reductive amination of levulinic acid with nitroarenes/nitriles. Importantly, this catalyst was used for the one-pot synthesis of the anti-inflammatory drug indoprofen from 2-formylbenzoic acid and 2-(4-nitrophenyl)propanoic acid.
Ambient Reductive Amination of Levulinic Acid to Pyrrolidones over Pt Nanocatalysts on Porous TiO2 Nanosheets
Xie, Chao,Song, Jinliang,Wu, Haoran,Hu, Yue,Liu, Huizhen,Zhang, Zhanrong,Zhang, Pei,Chen, Bingfeng,Han, Buxing
, p. 4002 - 4009 (2019/03/07)
Construction of N-substituted pyrrolidones from biomass-derived levulinic acid (LA) via reductive amination is a highly attractive route for biomass valorization. However, realizing this transformation using H2 as the hydrogen source under mild conditions is still very challenging. Herein, we designed porous TiO2 nanosheets-supported Pt nanoparticles (Pt/P-TiO2) as the heterogeneous catalyst. The prepared Pt/P-TiO2 was highly efficient for reductive amination of LA to produce various N-substituted pyrrolidones (34 examples) at ambient temperature and H2 pressure. Meanwhile, Pt/P-TiO2 showed good applicability for reductive amination of levulinic esters, 4-acetylbutyric acid, 2-acetylbenzoic acid, and 2-carboxybenzaldehyde. Systematic studies indicated that the strong acidity of P-TiO2 and the lower electron density of the Pt sites as well as the porous structure resulted in the excellent activity of Pt/P-TiO2.
Direct Synthesis of Lactams from Keto Acids, Nitriles, and H2 by Heterogeneous Pt Catalysts
Siddiki,Touchy, Abeda S.,Bhosale, Ashvini,Toyao, Takashi,Mahara, Yuji,Ohyama, Junya,Satsuma, Atsushi,Shimizu, Ken-Ichi
, p. 789 - 795 (2018/02/27)
We report herein the first general catalytic system for the direct synthesis of N-substituted γ- and δ-lactams by reductive amination/cyclization of keto acids (including levulinic acid) with nitriles and H2 under mild conditions (7 bar H2, 110 °C, solvent free). The most effective catalyst, Pt and MoOx co-loaded TiO2 (Pt-MoOx/TiO2), shows a wide substrate scope, high turnover number (TON), and good reusability.
Catalyst-free transformation of levulinic acid into pyrrolidinones with formic acid
Wei, Yawen,Wang, Chao,Jiang, Xue,Xue, Dong,Liu, Zhao-Tie,Xiao, Jianliang
supporting information, p. 1093 - 1096 (2014/03/21)
Levulinic acid (LA) is transformed into pyrrolidinones by formic acid in DMSO without a catalyst. Mechanistic studies suggest the involvement of an iminium intermediate and a rate-limiting hydride transfer step.
Heterogeneous Pt catalysts for reductive amination of levulinic acid to pyrrolidones
Touchy, Abeda Sultana,Hakim Siddiki,Kon, Kenichi,Shimizu, Ken-Ichi
, p. 3045 - 3050 (2015/01/09)
Supported platinum catalysts have been studied for the reductive amination of levulinic acid (LA) by H2 to N-alkyl-5-methyl-2-pyrrolidones under solvent-free conditions. The activity depends on the type of metal (Pt, Re, Pd, Rh, Ru, Cu, Ni), support material, and coloaded oxides of transition metals (V, Cr, Mo, W, Re). In 24 kinds of catalyst tested, Pt and MoOX (molybdenum oxide) coloaded TiO2 (Pt-MoOX/TiO2) shows the highest activity. Pt-MoOX/TiO2 is effective for reductive amination of LA with wide varieties of amines under mild conditions (3 bar of H2, 100 °C, solvent-free) to give high isolated yield of pyrrolidinones and shows higher turnover number (TON) than previously reported catalysts for reductive amination of LA with an aliphatic amine. The catalyst can be separated from the reaction mixture by filtration, and the recovered catalyst can be reused. This is the first general and reusable heterogeneous catalytic system for the reductive amination of LA. On the basis of mechanistic studies, high activity of Pt-MoOX/TiO2 can be attributed to acid-base interaction between the acid sites of Pt-MoOX/TiO2 and carboxyl groups in LA and an intermediate.
