Schulte Nele, Damonte Giacomo, Rocca Valeria Marisa, Todea Anamaria, Monticelli Orietta, Pellis Alessandro
Università degli Studi di Genova, Dipartimento di Chimica e Chimica Industriale via Dodecaneso 31 16146 Genova Italy
Faculty of Industrial Chemistry and Environmental Engineering, Polytechnic University of Timişoara Carol Telbisz 6 300001 Timişoara Romania.
Green Chem. 2025 Jan 3;27(7):1984-1996. doi: 10.1039/d4gc04951a. eCollection 2025 Feb 10.
In this work, three bis-pyrrolidone-based structures (BP) were synthesized combining dimethyl itaconate (DMI), the dimethyl ester derivative of itaconic acid, with various aliphatic diamines having a C4 to C12 carbon chain length with the aim of developing novel bio-based building blocks. All three BPs were obtained with a purity >93% and could further be used without performing any tedious purification step, therefore allowing an easy scalability of the synthesis on a 10 g scale. Their potential application was demonstrated in two key areas of modern polymer science: (1) the enzymatic synthesis of polyesters and (2) their use as poly(lactic acid) (PLA) additives. Firstly, the possibility of obtaining oligoesters by reacting the BP monomers with various aliphatic diols in a solventless reaction system and under mild conditions ( < 90 °C) was demonstrated thanks to the use of enzymatic catalysis. Linear oligoesters having mean average molecular weights between 1000 g mol and 6100 g mol and dispersity values <2 were successfully obtained. When applying the BP structures as PLA additives, the incorporation of a 10% w w BP in the polyester matrix resulted in systems with an 8× increased elongation at break and a decrease in the glass transition temperature compared to the neat polymer matrix.
在本研究中,合成了三种基于双吡咯烷酮的结构(BP),将衣康酸的二甲酯衍生物衣康酸二甲酯(DMI)与碳链长度为C4至C12的各种脂肪族二胺相结合,旨在开发新型生物基结构单元。所有三种BP的纯度均>93%,无需进行任何繁琐的纯化步骤即可进一步使用,因此能够轻松地将合成规模扩大到10 g。它们的潜在应用在现代聚合物科学的两个关键领域得到了证明:(1)聚酯的酶促合成和(2)它们作为聚乳酸(PLA)添加剂的用途。首先,由于使用了酶催化,证明了在无溶剂反应体系中且在温和条件(<90°C)下,使BP单体与各种脂肪族二醇反应获得低聚酯的可能性。成功获得了平均分子量在1000 g/mol至6100 g/mol之间且分散度值<2的线性低聚酯。当将BP结构用作PLA添加剂时,与纯聚合物基体相比,在聚酯基体中加入10%(重量/重量)的BP会使体系的断裂伸长率提高8倍,玻璃化转变温度降低。