Ortiz-Aldaco María Guadalupe, Báez José E, Jiménez-Halla J Oscar C
Department of Chemistry, University of Guanajuato (UG) Noria Alta S/N 36050 Guanajuato Gto. Mexico
RSC Adv. 2020 Aug 20;10(51):30815-30824. doi: 10.1039/d0ra05413e. eCollection 2020 Aug 17.
The ring-opening polymerization (ROP) of l-lactide (l-LA) was induced by the catalytic action of bismuth subsalicylate (BiSS) using linear aliphatic diols [HO(CH) OH, where = 2, 3, 4, 5, 6, and 8] as initiators and chain transfer agents. The theoretical and experimental degree of polymerization (DP) in all samples of α,ω-hydroxy telechelic poly(l-lactide) (HOPLLAOH) had a good agreement in all samples, an effect attributed to the interaction of BiSS with HO(CH) OH inducing a transfer reaction. HOPLLAOH was synthesized and characterized by a range of analytical techniques, confirming the insertion of methylene groups from the initiator into the main chain of the polyester. The glass-transition temperature ( ) of HOPLLAOH was found to be proportional to the number of methylene groups present in the diol. Various parameters regarding the ROP of l-LA were studied, such as temperature, time of reaction, amount of catalyst, and the nature of the diols. A kinetic study of the reaction allowed the determination of the rate constants () and activation energy ( ). A mechanism of initiation is proposed based on a computational study using density functional theory (DFT), evidencing the role of the alkyl diol as an initiator, producing an alkoxide (Bi-OROH). This species then acts as a nucleophile, attacking the carbonyl group, inducing its insertion, and ultimately completing the ring-opening of l-LA.
以线性脂肪族二醇[HO(CH₂)ₙOH,其中n = 2、3、4、5、6和8]作为引发剂和链转移剂,在碱式水杨酸铋(BiSS)的催化作用下引发左旋丙交酯(l-LA)的开环聚合(ROP)。在所有α,ω-羟基遥爪聚(左旋丙交酯)(HOPLLA-OH)样品中,理论聚合度(DP)和实验聚合度具有良好的一致性,这一效应归因于BiSS与HO(CH₂)ₙOH的相互作用引发了转移反应。通过一系列分析技术对HOPLLA-OH进行了合成和表征,证实了引发剂中的亚甲基插入到了聚酯主链中。发现HOPLLA-OH的玻璃化转变温度(Tg)与二醇中存在的亚甲基数量成正比。研究了关于l-LA开环聚合的各种参数,如温度、反应时间、催化剂用量和二醇的性质。对该反应进行动力学研究,确定了速率常数(k)和活化能(Ea)。基于密度泛函理论(DFT)的计算研究提出了引发机理,证明了烷基二醇作为引发剂的作用,生成了醇盐(Bi-OR-OH)。该物种随后作为亲核试剂,攻击羰基,诱导其插入,最终完成l-LA的开环。