Key Laboratory of Polymer Ecomaterials, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Renmin Street 5625, Changchun, 130022, P. R. China.
University of Science and Technology of China, Hefei, 230026, P. R. China.
Angew Chem Int Ed Engl. 2023 Jun 12;62(24):e202302898. doi: 10.1002/anie.202302898. Epub 2023 May 4.
Chemically recyclable polymers that can depolymerize into their constituent monomers are attractive candidates to replace non-recyclable petroleum-derived plastics. However, the physical properties and mechanical strengths of depolymerizable polymers are commonly insufficient for practical applications. Here we demonstrate that by proper ligand design and modification, aluminum complexes can catalyse stereoretentive ring-opening polymerization of dithiolactone, yielding highly isotactic polythioesters with molar masses up to 45.5 kDa. This material can form crystalline stereocomplex with a T of 94.5 °C, and exhibits mechanical performances comparable to petroleum-based low density polyethylene. Exposure of the polythioester to aluminum precatalyst used to synthesized it resulted in depolymerization to pristine chiral dithiolactone. Experimental and computational studies suggest that aluminum complexes have appropriate binding affinity with sulfide propagating species, thereby avoiding catalyst poisoning and minimizing epimerization reactions, which has not been accessible using other metal catalysts. Overall, aluminum catalysis provides access to performance-advantaged stereoregular recyclable plastics as a promising alternative to petrochemical plastics, thus incentivizing improved plastic sustainability.
可化学回收的聚合物可以解聚成其组成单体,是替代不可回收的石油衍生塑料的有吸引力的候选材料。然而,可解聚聚合物的物理性质和机械强度通常不足以满足实际应用的要求。在这里,我们证明通过适当的配体设计和修饰,铝配合物可以催化二硫内酯的立体选择性开环聚合,得到摩尔质量高达 45.5 kDa 的高度等规聚硫酯。这种材料可以与 T 为 94.5°C 的结晶性立体复合物形成,并且表现出与石油基低密度聚乙烯相当的机械性能。将聚硫酯暴露于用于合成它的铝前催化剂中会导致其解聚为原始手性二硫内酯。实验和计算研究表明,铝配合物与硫代聚合体具有适当的结合亲和力,从而避免了催化剂中毒并最小化了差向异构化反应,这是使用其他金属催化剂无法实现的。总的来说,铝催化为具有性能优势的立体规则可回收塑料提供了途径,作为石油化工塑料的有前途的替代品,从而激励了塑料可持续性的提高。