Liu Guan-Lin, Su Yu-Chia, Chuang Wei-Hsin, Ko Bao-Tsan
Department of Chemistry, National Chung Hsing University, Taichung 402, Taiwan.
Inorg Chem. 2024 Oct 21;63(42):19582-19592. doi: 10.1021/acs.inorgchem.4c02536. Epub 2024 Oct 10.
This study reported for the first time the facile synthesis of a series of novel structurally well-characterized heterodinuclear indium(III)/sodium(I) dihalide complexes containing benzotriazole-based bis(amino-phenolate) derivatives. All heterobimetallic In(III)/Na(I) complexes were found to be active single-component catalysts for the copolymerization of carbon dioxide (CO) with cyclohexene oxide (CHO). Noteworthily, In/Na chloro complex has been shown to give high copolymerization selectivity possessing >99% carbonate repeated units for CO-derived poly(cyclohexene carbonate) production and displayed a turnover number of >1400 under the optimized conditions. Apart from the CO/CHO copolymerization, the same complex was capable of mediating the CO-copolymerization of 4-vinyl-1,2-cyclohexene oxide or cyclopentene oxide to deliver the related CO-based polycarbonates. To the best of our knowledge, complex in this work appears to be the first example of In/Na halide complex-promoted CO/epoxide copolymerization that enabled the generation of aliphatic polycarbonates with good productivity and high product selectivity.
本研究首次报道了一系列结构特征明确的新型异双核铟(III)/钠(I)二卤化物配合物的简便合成方法,这些配合物含有基于苯并三唑的双(氨基酚盐)衍生物。所有异双金属铟(III)/钠(I)配合物均被发现是用于二氧化碳(CO₂)与环氧环己烷(CHO)共聚的活性单组分催化剂。值得注意的是,铟/钠氯配合物已被证明具有高共聚选择性,在制备源自CO₂的聚(环己烯碳酸酯)时,碳酸酯重复单元含量>99%,并且在优化条件下的周转数>1400。除了CO₂/CHO共聚反应外,同一配合物还能够介导4-乙烯基-1,2-环氧环己烷或环氧环戊烷与CO₂的共聚反应,以制备相关的基于CO₂的聚碳酸酯。据我们所知,本工作中的配合物似乎是首例铟/钠卤化物配合物促进的CO₂/环氧化物共聚反应,该反应能够以良好的产率和高产物选择性生成脂肪族聚碳酸酯。