Knowledge Agora



Similar Articles

Title Are Well Performing Catalysts for the Ring Opening Polymerization of L-Lactide under Mild Laboratory Conditions Suitable for the Industrial Process? The Case of New Highly Active Zn(II) Catalysts
ID_Doc 14001
Authors D'Alterio, MC; D'Auria, I; Gaeta, L; Tedesco, C; Brenna, S; Pellecchia, C
Title Are Well Performing Catalysts for the Ring Opening Polymerization of L-Lactide under Mild Laboratory Conditions Suitable for the Industrial Process? The Case of New Highly Active Zn(II) Catalysts
Year 2022
Published Macromolecules, 55, 12
Abstract Poly(lactic acid) (PLA) is one of the best candidates as a sustainable plastic material for a circular economy, being biodegradable, bio-based, recyclable, and displaying good thermal and mechanical properties. The industrial production of PLA is mainly based on the ring opening polymerization (ROP) of L-lactide (L-LA) promoted by tin(II) 2-ethylhexanoate [Sn(Oct)(2)] in a continuous solvent-free process operating at temperatures between 180 and 200 degrees C, above the melting point of the resulting isotactic polymer. Despite the huge efforts in the research of alternative catalysts based on less toxic metals, resulting in a plethora of highly active catalysts under laboratory mild conditions, very few candidates can compete with Sn(Oct) 2 under industrially relevant conditions. We report a family of new Zn(II) complexes, bearing variously substituted monoanionic [N,O-] (imidazole[1,5-a]pyrid3-yl)phenolate ligands, as catalysts for the ROP of L-LA under both mild (20 degrees C, solvent) and industrially relevant (190 degrees C, in the melt, technical grade unpurified monomer, very low catalyst loading) conditions. Interestingly, the best performing catalyst under mild conditions is the worst performing under harsh conditions, and, on the contrary, the less active catalysts under mild conditions compete well with Sn(Oct)(2) under industrially relevant conditions. Kinetic and DFT mechanistic investigations shed light on the non-trivial role of the 2-pyridine substituent in the catalytic performances at different temperatures. Preliminary depolymerization tests on commercial PLLA samples suggested that the new catalysts can also be a suitable candidate for the chemical recycling of PLA under mild conditions.
PDF https://doi.org/10.1021/acs.macromol.2c00719

Similar Articles

ID Score Article
19931 Payne, JM; Kociok-Köhn, G; Emanuelsson, EAC; Jones, MD Zn(II)- and Mg(II)-Complexes of a Tridentate {ONN} Ligand: Application to Poly(lactic acid) Production and Chemical Upcycling of Polyesters(2021)Macromolecules, 54.0, 18
18628 Liu, S; Hu, L; Liu, JY; Zhang, ZS; Suo, HY; Qin, YS Zinc Catalyst for Chemical Upcycling of PLA Wastes: Novel Industrial Monomer Resource toward Poly(ester-amide)(2024)Macromolecules, 57.0, 10
20102 McKeown, P; Román-Ramírez, LA; Bates, S; Wood, J; Jones, MD Zinc Complexes for PLA Formation and Chemical Recycling: Towards a Circular Economy(2019)Chemsuschem, 12, 24
21053 Becker, T; Hermann, A; Saritas, N; Hoffmann, A; Herres-Pawlis, S Open- and Closed-Loop Recycling: Highly Active Zinc Bisguanidine Polymerization Catalyst for the Depolymerization of Polyesters(2024)
22818 Lin, J; Wang, P; Fan, L; Xiao, T; Cheng, JH; Chen, X Quinolyl/pyridyl-amino Li complexes as dual catalysts for the ring-opening polymerization of cyclic esters and degradation toward a circular economy approach(2023)
22788 Fuchs, M; Schäfer, PM; Wagner, W; Krumm, I; Walbeck, M; Dietrich, R; Hoffmann, A; Herres-Pawlis, S A Multitool for Circular Economy: Fast Ring-Opening Polymerization and Chemical Recycling of (Bio)polyesters Using a Single Aliphatic Guanidine Carboxy Zinc Catalyst(2023)Chemsuschem, 16.0, 12
19513 Román-Ramírez, LA; McKeown, P; Jones, MD; Wood, J Kinetics of Methyl Lactate Formation from the Transesterification of Polylactic Acid Catalyzed by Zn(II) Complexes(2020)Acs Omega, 5.0, 10
6237 Lamberti, FM; Roman-Ramírez, LA; Dove, AP; Wood, J Methanolysis of Poly(lactic Acid) Using Catalyst Mixtures and the Kinetics of Methyl Lactate Production(2022)Polymers, 14, 9
18931 Tiwari, OS; Rawat, V; Zhang, H; Chibh, S; Rencus-Lazar, S; Diesendruck, CE; Gazit, E Ring-opening polymerization of lactide catalyzed using metal-coordinated enzyme-like amino acid assemblies(2024)
7999 Santulli, F; Pappalardo, D; Lamberti, M; Amendola, A; Barba, C; Sessa, A; Tepedino, G; Mazzeo, M Simple and Efficient Zinc Catalysts for Synthesis and Chemical Degradation of Polyesters(2023)Acs Sustainable Chemistry & Engineering, 11, 43
Scroll