Lin Liang-Kai, Wang Jane, Liu Ying-Ling
Department of Chemical Engineering, National Tsing Hua University, #101, Sec. 2, Kuang-Fu Road, Hsinchu 30013, Taiwan.
ACS Omega. 2018 Apr 27;3(4):4641-4646. doi: 10.1021/acsomega.8b00309. eCollection 2018 Apr 30.
On the basis of the reaction between ketene and alcohol groups to result in an ester linkage and Meldrum's acid as an effective precursor of ketene group, a bifunctional aliphatic Meldrum's acid compound (BisMA) is synthesized and used as a monomer to react with ethylene glycol and glycerol for the preparation of linear and cross-linked aliphatic polyesters, respectively. A 62 and 35 wt % of biodegradation fraction have been recorded on the linear and cross-linked aliphatic polyesters after an 8 week biodegradation test, respectively, to demonstrate the good biodegradability of the synthesized polyesters. In addition to conventional linear biodegradable polyesters, this synthetic route also provides a new and convenient method for preparation of cross-linked biodegradable polyesters. The types of the required monomers and reaction methods for preparation of the cross-linked biodegradable polyesters are similar to those used for conventional thermosetting resins. An integration of biodegradable polymers and thermosetting resins in polymer chemistry has been demonstrated.
基于乙烯酮与醇基团之间反应生成酯键,以及丙二酸亚异丙酯作为乙烯酮基团的有效前体,合成了一种双官能脂肪族丙二酸亚异丙酯化合物(BisMA),并将其用作单体分别与乙二醇和甘油反应,以制备线性和交联脂肪族聚酯。经过8周的生物降解试验后,线性和交联脂肪族聚酯的生物降解率分别达到62%和35%,这证明了合成聚酯具有良好的生物降解性。除了传统的线性可生物降解聚酯外,该合成路线还为制备交联可生物降解聚酯提供了一种新的便捷方法。制备交联可生物降解聚酯所需的单体类型和反应方法与用于传统热固性树脂的类似。聚合物化学中可生物降解聚合物与热固性树脂的融合已得到证实。