Pankhurst James R, Paul Shyeni, Zhu Yunqing, Williams Charlotte K, Love Jason B
EaStCHEM School of Chemistry, The University of Edinburgh, Joseph Black Building, David Brewster Road, Edinburgh, EH9 3FJ, UK.
Dalton Trans. 2019 Apr 9;48(15):4887-4893. doi: 10.1039/c9dt00595a.
The reactions between alcohols and the tetranuclear ethyl-Zn complexes of an ortho-phenylene-bridged polypyrrole macrocycle, Zn4Et4(L1) 1 and the related anthracenyl-bridged macrocyclic complex, Zn4Et4(THF)4(L2) 2 have been studied. With long-chain alcohols such as n-hexanol, the clean formation of the tetranuclear hexoxide complex Zn4(OC6H13)4(L1) 3 occurs. In contrast, the use of shorter-chain alcohols such as i-propanol results in the trinuclear complex Zn3(μ2-OiPr)2(μ3-OiPr)(HL1) 4 that arises from demetalation; this complex was characterised by X-ray crystallography. The clean formation of these polynuclear zinc clusters allowed a study of their use as catalysts in the ring-opening copolymerisation (ROCOP) reaction between cyclohexene oxide and CO2. In situ reactions involving the pre-catalyst 1 and n-hexanol formed the desired polymer with the best selectivity for polycarbonate (90%) at 30 atm CO2, whilst the activity and performance of pre-catalyst 2 was poor in comparison.
已对醇与邻亚苯基桥联聚吡咯大环的四核乙基锌配合物Zn4Et4(L1) 1以及相关的蒽基桥联大环配合物Zn4Et4(THF)4(L2) 2之间的反应进行了研究。对于长链醇,如正己醇,会生成四核己氧化物配合物Zn4(OC6H13)4(L1) 3。相比之下,使用短链醇,如异丙醇,会导致因脱金属作用而产生三核配合物Zn3(μ2-OiPr)2(μ3-OiPr)(HL1) 4;该配合物通过X射线晶体学进行了表征。这些多核锌簇的纯净生成使得能够研究它们在环氧环己烷与二氧化碳之间的开环共聚反应(ROCOP)中作为催化剂的用途。涉及预催化剂1和正己醇的原位反应在30个大气压的二氧化碳条件下形成了所需聚合物,对聚碳酸酯的选择性最佳(90%),而相比之下,预催化剂2的活性和性能较差。