Feng Hongzhi, Wang Sheng, Lim Jason Y C, Li Bofan, Rusli Wendy, Liu Feng, Hadjichristidis Nikos, Li Zibiao, Zhu Jin
Key Laboratory of Bio-Based Polymeric Materials Technology and Application of Zhejiang Province, Laboratory of Polymers and Composites, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, 315201, People's Republic of China.
University of Chinese Academy of Sciences, Beijing, 100049, People's Republic of China.
Angew Chem Int Ed Engl. 2024 May 13;63(20):e202400955. doi: 10.1002/anie.202400955. Epub 2024 Apr 9.
Vitrimers represent an emerging class of polymeric materials that combine the desirable characteristics of both thermoplastics and thermosets achieved through the design of dynamic covalent bonds within the polymer networks. However, these materials are prone to creep due to the inherent instability of dynamic covalent bonds. Consequently, there are pressing demands for the development of robust and stable dynamic covalent chemistries. Here, we report a catalyst-free α-acetyl cinnamate/acetoacetate (α-AC/A) exchange reaction to develop vitrimers with remarkable creep resistance. Small-molecule model studies revealed that the α-AC/A exchange occurred at temperatures above 140 °C in bulk, whereas at 120 °C, this reaction was absent. For demonstration in the case of polymers, copolymers derived from common vinyl monomers were crosslinked with terephthalaldehyde to produce α-AC/A vitrimers with tunable thermal and mechanical performance. All resulting α-AC/A vitrimers exhibited high stability, especially in terms of creep resistance at 120 °C, while retaining commendable reprocessability when subjected to high temperatures. This work showcases the α-AC/A exchange reaction as a novel and robust dynamic covalent chemistry capable of imparting both reprocessability and high stability to cross-linked networks.
可降解交联聚合物是一类新兴的聚合材料,它通过在聚合物网络中设计动态共价键,结合了热塑性塑料和热固性塑料的理想特性。然而,由于动态共价键固有的不稳定性,这些材料容易发生蠕变。因此,迫切需要开发强大而稳定的动态共价化学。在此,我们报道了一种无催化剂的α-乙酰肉桂酸酯/乙酰乙酸酯(α-AC/A)交换反应,以开发具有显著抗蠕变性的可降解交联聚合物。小分子模型研究表明,α-AC/A交换在本体温度高于140°C时发生,而在120°C时,该反应不存在。为了在聚合物中进行演示,将源自常见乙烯基单体的共聚物与对苯二甲醛交联,以制备具有可调热性能和机械性能的α-AC/A可降解交联聚合物。所有所得的α-AC/A可降解交联聚合物都表现出高稳定性,特别是在120°C时的抗蠕变性方面,同时在高温下仍保持良好的可再加工性。这项工作展示了α-AC/A交换反应是一种新颖且强大的动态共价化学,能够赋予交联网络再加工性和高稳定性。