Barquero Aitor, Zanoni Arianna, Gabirondo Elena, González de San Román Estibaliz, Hamzehlou Shaghayegh, Ximenis Marta, Moscatelli Davide, Sardon Haritz, Leiza Jose Ramon
POLYMAT and Department of Applied Chemistry, University of the Basque Country UPV/EHU, Joxe Mari Korta Center, Tolosa hiribidea, 72, 20018 Donostia, Spain.
Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, via Mancinelli 7, 2013 Milano, Italy.
ACS Macro Lett. 2024 Mar 19;13(3):368-374. doi: 10.1021/acsmacrolett.4c00101. Epub 2024 Mar 8.
Producing backbone degradable copolymers via free-radical copolymerization is a promising, yet challenging method to develop more sustainable materials for many applications. In this work, we present the copolymerization of 2-methylen-1,3-dioxepane (MDO) with crotonic acid derivative esters. MDO can copolymerize by radical ring-opening polymerization incorporating degradable ester moieties in the polymer backbone, although this can often be difficult due to the very unfavorable reactivity ratios. Crotonic acid derivatives, on the other hand, can be easily produced completely from biomass but are typically very difficult to (co)polymerize due to low propagation rates and very unfavorable reactivity ratios. Herein, we present the surprisingly easy copolymerization between MDO and butyl crotonate (BCr), which shows the ability to form alternating copolymers. The alternating nature of the copolymer was characterized by MALDI-TOF and supported by the reactivity ratios calculated experimentally ( = 0.105 and = 0.017). The alternating nature of the copolymers favored the degradability that could be achieved under basic conditions (in 2 h, all chains have molar masses smaller than 2 kg/mol). Last, the work was expanded to other crotonate monomers to expand the portfolio and show the potential of this copolymer family.
通过自由基共聚制备主链可降解共聚物是一种很有前景但具有挑战性的方法,可用于开发适用于多种应用的更可持续材料。在这项工作中,我们展示了2-亚甲基-1,3-二氧六环(MDO)与巴豆酸衍生物酯的共聚反应。MDO可以通过自由基开环聚合进行共聚,在聚合物主链中引入可降解的酯基,尽管由于非常不利的反应活性比,这通常很困难。另一方面,巴豆酸衍生物可以很容易地完全由生物质制备,但由于低增长速率和非常不利的反应活性比,通常很难进行(共)聚合。在此,我们展示了MDO与巴豆酸丁酯(BCr)之间令人惊讶的容易共聚反应,这表明能够形成交替共聚物。通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)对共聚物的交替性质进行了表征,并得到了实验计算的反应活性比(r₁ = 0.105和r₂ = 0.017)的支持。共聚物的交替性质有利于在碱性条件下实现降解性(在2小时内,所有链的摩尔质量均小于2 kg/mol)。最后,该工作扩展到其他巴豆酸酯单体,以扩大产品组合并展示该共聚物家族的潜力。