Department of Chemistry, Yonsei University, Seoul 03722, Republic of Korea.
ACS Macro Lett. 2023 May 16;12(5):590-597. doi: 10.1021/acsmacrolett.3c00104. Epub 2023 Apr 17.
Ring-opening alternating copolymerization (ROAC) of cyclic anhydrides and epoxides has emerged as a powerful strategy to produce degradable polyesters with a diverse array of structures from the combination of two distinct building blocks. In this work, we exploited the organocatalytic ROAC of cyclic anhydrides and a functional epoxide, -butyl glycidoxy acetate, followed by acidic deprotection to access degradable polyesters with carboxylic acid pendants. To study the interplay between monomers, diglycolic anhydride and glutaric anhydride were used as cyclic anhydrides to prepare two polyesters. In particular, the effects of the oxygen heteroatom in the cyclic anhydrides on the properties of the carboxylic acid-containing polyesters were investigated. The introduction of the oxygen heteroatom into the cyclic anhydrides significantly influenced their thermal properties and pH-dependent self-association behavior in an aqueous solution. Furthermore, molecular dynamics simulations elucidate that the number and type of hydrogen bonds play a crucial role in the self-association behavior between the polymers both in the solution and bulk states. The findings of this study highlight the importance of the interplay between monomers in the design of functional polyesters with tunable properties.
开环交替共聚(ROAC)环状酸酐和环氧化物是一种强大的策略,可将两种不同的单体组合,生成具有各种结构的可降解聚酯。在这项工作中,我们利用有机催化 ROAC 环状酸酐和功能环氧化物——-丁基缩水甘油酸酯,随后进行酸性脱保护,得到带有羧酸侧基的可降解聚酯。为了研究单体之间的相互作用,我们使用了二甘醇酸酐和戊二酸酐作为环状酸酐,制备了两种聚酯。特别是,研究了环状酸酐中的氧杂原子对含羧酸聚酯性能的影响。环状酸酐中氧杂原子的引入显著影响了它们的热性能和在水溶液中 pH 依赖性的自组装行为。此外,分子动力学模拟阐明了在溶液和本体状态下,聚合物之间氢键的数量和类型对自组装行为起着关键作用。这项研究的结果强调了单体相互作用在设计具有可调性能的功能性聚酯中的重要性。