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Di- and Tri-Zinc Catalysts for the Low-Pressure Copolymerization of CO2 and Cyclohexene Oxide

机译:二氧化碳和环己烯氧化物的低压共聚用二锌和三锌催化剂

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摘要

The syntheses and characterization of three new macrocyclic proligands, with variation of the para aryl ring substituent, are reported. Dizinc and trizinc acetate complexes are prepared using these ligands and are characterized using infrared and nuclear magnetic resonance spectroscopies, mass spectrometry, elemental analysis, and, for the three trizinc complexes, single-crystal X-ray diffraction. The X-ray crystallographic and spectroscopic data indicate bridging and terminal acetate coordination modes, both in the solid state and in solution, for the trizinc complexes. All of the complexes show good turnover numbers and frequencies, under 1 atm of pressure of carbon dioxide, for the copolymerization of CO2 and cyclohexene oxide to produce poly(cyclohexene carbonate), The electronic nature of the ancillary ligands' substituents influences the catalytic activity of the complex, with the electron-donating substituent reducing the activity. The dizinc catalysts show markedly higher activities than the trizinc analogues, suggesting that the coordination environment within the macrocycle is crucial to controlling the catalytic activity.
机译:报道了三种新的大环配体的合成和表征,其中对芳基环取代基的变化。乙酸二锌和乙酸三锌络合物是使用这些配体制备的,并使用红外和核磁共振谱,质谱,元素分析进行​​表征,对于三种三锌络合物,则使用单晶X射线衍射进行表征。 X射线晶体学和光谱数据表明,在固态和在溶液中,三锌络合物的桥联和末端乙酸盐配位模式。所有的配合物在1atm的二氧化碳压力下均表现出良好的周转次数和频率,用于CO2和环己烯氧化物的共聚反应生成聚(碳酸环己烯酯)。辅助配体取代基的电子性质影响其催化活性。配合物,带有供电子取代基会降低活性。二锌催化剂显示出比三锌类似物明显更高的活性,这表明大环内的配位环境对于控制催化活性至关重要。

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