Podgórski Maciej, Mavila Sudheendran, Huang Sijia, Spurgin Nathan, Sinha Jasmine, Bowman Christopher N
Department of Chemical and Biological Engineering, University of Colorado, UCB 596, Boulder, 80309, CO, USA.
Department of Polymer Chemistry, Maria Curie-Sklodowska University, pl. Marii Curie-Sklodowskiej 5, 20-031, Lublin, Poland.
Angew Chem Int Ed Engl. 2020 Jun 8;59(24):9345-9349. doi: 10.1002/anie.202001388. Epub 2020 Apr 1.
The reaction of thiols and anhydrides to form ring opened thioester/acids is shown to be highly reversible and it is accordingly employed in the fabrication of covalent adaptable networks (CANs) that possess tunable dynamic covalent chemistry. Maleic, succinic, and phthalic anhydride derivatives were used as bifunctional reactants in systems with varied stoichiometries, catalyst, and loadings. Dynamic characteristics such as temperature-dependent stress relaxation, direct reprocessing and recycling abilities of a range of thiol-anhydride elastomers, glasses, composites and photopolymers are discussed. Depending on the catalyst strength, 100 % of externally imposed stresses were relaxed in the order of minutes to 2 hours at mild temperatures (80-120 °C). Pristine properties of the original materials were recovered following up to five cycles of a hot-press reprocessing technique (1 h/100 °C).
硫醇与酸酐反应形成开环硫酯/酸的反应被证明具有高度可逆性,因此可用于制备具有可调动态共价化学性质的共价自适应网络(CANs)。马来酸酐、琥珀酸酐和邻苯二甲酸酐衍生物在不同化学计量比、催化剂和负载量的体系中用作双功能反应物。讨论了一系列硫醇-酸酐弹性体、玻璃、复合材料和光聚合物的动态特性,如温度依赖性应力松弛、直接再加工和回收能力。根据催化剂强度,在温和温度(80-120°C)下,100%的外部施加应力在几分钟到2小时内松弛。经过高达五个循环的热压再加工技术(1小时/100°C)后,原始材料的原始性能得以恢复。