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Updated: Sep 8, 2026

Designed for Molecular Recycling: A Lignin-Derived Semi-aromatic Biobased Polymer
Published on: November 30, 2020
Sustainable Recovery of Dibutyl Terephthalate from Aromatic Polyester Waste via Solvothermal Alcoholysis
Karolina Matuszak1, Rafał Petrus1, Tadeusz Lis2
1Faculty of Chemistry, Wrocław University of Science and Technology, 23 Smoluchowskiego, Wrocław50-370, Poland.
Abstract:
In this work, a series of homometallic and heterometallic aryloxides, including [M'6(sal-Me)6] (M'+ = Li+ (1), Na+ (2), K+ (3)), [M'(sal-Me)]n (M'+ = Rb+ (4), Cs+ (5)), [Mg2(sal-Et)4(EtOH)2] (6), [Zn4(sal-Me)8] (7), [Ca3(sal-Me)6(EtOH)2] (8), [M2M'2(sal-Me)6(X)x] (where M2+ = Mg2+ and M'+ = Li+ (9), Na+ (10), K+ (11); M2+ = Zn2+ and M'+ = Li+ (13), Na+ (14), K+ (15); or M2+ = Ca2+ and M'+ = Li+ (16), Na+ (17), K+ (18) with X = THF or MeOH and x = 0, 2, 4), [MgRb(μ-H2O)(sal-Me)3(H2O)0.5]n (12), [Mg4Na2(sal-Me)6(sal)2(THF)4] (19), [CaLi6(sal-Me)8] (20), [Ca4M'(μ5-OH)(sal-Et)8(EtOH)] (M'+ = Na+ (21), K+ (22)), [ZnLi2(sal-Me)4(THF)2] (23), and [ZnM'2(sal-R)4]n (for M' = Na and R = Et (24), M' = K and R = Me (25)), were investigated as catalysts for the chemical recycling of postconsumer poly(ethylene terephthalate) (PET) and poly(ethylene-co-isosorbide-co-1,4-cyclohexanedimethylene terephthalate) (PEICT) waste. The catalytic performance of metal aryloxides was evaluated in relation to their chemical composition, solid-state structures, and solution behavior, allowing general trends in the catalytic activity of alkali metal and divalent metal aryloxides (Mg2+, Ca2+, Zn2+) and their heterometallic combinations to be established. Key factors governing catalytic activity, reaction mechanisms, and the formation of reaction intermediates are also discussed.
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