Zhang Huiyi, Majumdar Soumabrata, van Benthem Rolf A T M, Sijbesma Rint P, Heuts Johan P A
Department of Chemical Engineering & Chemistry and Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.
DSM Materials Science Center, Urmonderbaan 22, 6167 RD Geleen, The Netherlands.
ACS Macro Lett. 2020 Feb 18;9(2):272-277. doi: 10.1021/acsmacrolett.9b01023. Epub 2020 Feb 6.
Dynamic covalent bonds in a polymer network lead to plasticity, reshapability, and potential recyclability at elevated temperatures in combination with solvent-resistance and better dimensional stability at lower temperatures. Here we report a simple one-step procedure for the catalyst-free preparation and intramolecularly catalyzed stress-relaxation of dynamic polyester networks. The procedure is based on the coupling of branched OH-end functional polyesters (functionality ≥ 3) by pyromellitic dianhydride (PMDA) or 2,5-bis(methoxy-carbonyl) benzenesulfonic acid resulting in ester linkages with, respectively, a COOH or a SOH group in a position to the ester bond. This approach leads to an efficient external catalyst-free dynamic polyester network, in which the topology rearrangements occur via a dissociative mechanism involving anhydrides. The SOH-containing network is particularly interesting, as it shows the fastest stress relaxation and does not suffer from unwanted additional transesterification reactions, as was observed in the COOH-containing network.
聚合物网络中的动态共价键可带来可塑性、可重塑性,以及在高温下的潜在可回收性,同时具备耐溶剂性和在低温下更好的尺寸稳定性。在此,我们报告一种简单的一步法,用于无催化剂制备动态聚酯网络并实现其分子内催化的应力松弛。该方法基于通过均苯四甲酸二酐(PMDA)或2,5-双(甲氧基羰基)苯磺酸对支化的羟基封端聚酯(官能度≥3)进行偶联,从而分别生成在酯键邻位带有COOH或SOH基团的酯键。这种方法可得到高效的无外部催化剂动态聚酯网络,其中拓扑重排通过涉及酸酐的解离机制发生。含SOH的网络尤其引人关注,因为它表现出最快的应力松弛,且不会像含COOH的网络那样遭受不必要的额外酯交换反应。