EaStCHEM School of Chemistry, University of Edinburgh, Edinburgh, EH9 3FJ, UK.
Chem Soc Rev. 2022 Oct 31;51(21):8793-8814. doi: 10.1039/d2cs00048b.
With sustainability at the forefront of current polymerisation research, the typically earth-abundant, inexpensive and low-toxicity main group metals are attractive candidates for catalysis. Main group metals have been exploited in a broad range of polymerisations, ranging from classical alkene polymerisation to the synthesis of new bio-derived and degradable polyesters and polycarbonates ring-opening polymerisation and ring-opening copolymerisation. This tutorial review highlights efficient polymerisation catalysts based on Group 1, Group 2, Zn and Group 13 metals. Key mechanistic pathways and catalyst developments are discussed, including tailored ligand design, heterometallic cooperativity, bicomponent systems and careful selection of the polymerisation conditions, all of which can be used to fine-tune the metal Lewis acidity and the metal-alkyl bond polarity.
在当前的聚合研究中,可持续性处于前沿地位,典型的丰富、廉价且低毒性的主族金属是催化的有吸引力的候选物。主族金属已广泛应用于各种聚合反应中,从经典的烯烃聚合反应到新型生物衍生和可降解聚酯和聚碳酸酯的合成、开环聚合和开环共聚反应。本综述重点介绍了基于第 1 族、第 2 族、Zn 和第 13 族金属的高效聚合催化剂。讨论了关键的反应机理和催化剂的发展,包括定制配体设计、杂金属协同作用、双组分体系以及聚合条件的精心选择,所有这些都可用于微调金属路易斯酸度和金属-烷基键极性。