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Heterodinuclear zinc and magnesium catalysts for epoxide/CO2 ring opening copolymerizations

机译:用于环氧化物/ CO2开环共聚的异核锌和镁催化剂

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The ring-opening copolymerization of carbon dioxide and epoxides is a useful means to make aliphatic polycarbonates and to add-value to CO _(2) . Recently, the first heterodinuclear Zn( II )/Mg( II ) catalyst showed greater activity than either homodinuclear analogue ( J. Am. Chem. Soc. 2015 , 137, 15078–15081). Building from this preliminary finding, here, eight new Zn( II )/Mg( II ) heterodinuclear catalysts featuring carboxylate co-ligands are prepared and characterized. The best catalysts show very high activities for copolymerization using cyclohexene oxide (TOF = 8880 h ~(?1) , 20 bar CO _(2) , 120 °C, 0.01 mol% catalyst loading) or cyclopentene oxide. All the catalysts are highly active in the low pressure regime and specifically at 1 bar pressure CO _(2) . The polymerization kinetics are analysed using in situ spectroscopy and aliquot techniques: the rate law is overall second order with a first order dependence in both catalyst and epoxide concentrations and a zero order in carbon dioxide pressure. The pseudo first order rate coefficient values are compared for the catalyst series and differences are primarily attributed to effects on initiation rates. The data are consistent with a chain shuttling mechanistic hypothesis with heterodinuclear complexes showing particular rate enhancements by optimizing distinct roles in the catalytic cycles. The mechanistic hypothesis should underpin future heterodinuclear catalyst design for use both in other (co)polymerization and carbon dioxide utilization reactions.
机译:二氧化碳和环氧化物的开环共聚是制备脂族聚碳酸酯和增加CO_(2)附加值的有用手段。最近,第一种杂双核Zn(II)/ Mg(II)催化剂显示出比任一种同双核类似物都更高的活性(J. Am。Chem。Soc。2015,137,15078–15081)。基于该初步发现,在此制备并表征了八种具有羧酸盐共配体特征的新型Zn(II)/ Mg(II)异二核催化剂。最好的催化剂在使用环己烯氧化物(TOF = 8880 h〜(?1),20 bar CO_(2),120°C,0.01 mol%催化剂负载量)或环戊烯氧化物的情况下显示出很高的共聚活性。所有催化剂在低压状态下,特别是在1 bar压力CO_(2)下都是高活性的。使用原位光谱法和等分试样技术分析聚合动力学:速率定律总体上是二阶的,催化剂和环氧化物的浓度都与一阶有关,而二氧化碳压力则为零阶。比较催化剂系列的伪一级反应速率系数值,并且差异主要归因于对引发速率的影响。数据与异链双核配合物的链穿梭机理假说相符,该假说通过优化催化循环中的不同作用而显示出特定的速率增加。机理假说应为将来用于其他(共)聚合和二氧化碳利用反应的异双核催化剂设计奠定基础。

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