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Co(III)/Alkali-Metal(I) Heterodinuclear Catalysts for the Ring-Opening Copolymerization of CO2 and Propylene Oxide

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Figshare2020-10-27 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Co_III_Alkali-Metal_I_Heterodinuclear_Catalysts_for_the_Ring-Opening_Copolymerization_of_CO_sub_2_sub_and_Propylene_Oxide/13150998
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The ring-opening copolymerization of carbon dioxide and propene oxide is a useful means to valorize waste into commercially attractive poly­(propylene carbonate) (PPC) polyols. The reaction is limited by low catalytic activities, poor tolerance to a large excess of chain transfer agent, and tendency to form byproducts. Here, a series of new catalysts are reported that comprise heterodinuclear Co­(III)/M­(I) macrocyclic complexes (where M­(I) = Group 1 metal). These catalysts show highly efficient production of PPC polyols, outstanding yields (turnover numbers), quantitative carbon dioxide uptake (>99%), and high selectivity for polyol formation (>95%). The most active, a Co­(III)/K­(I) complex, shows a turnover frequency of 800 h–1 at low catalyst loading (0.025 mol %, 70 °C, 30 bar CO2). The copolymerizations are well controlled and produce hydroxyl telechelic PPC with predictable molar masses and narrow dispersity (Đ 2 pressure. An Eyring analysis, examining the effect of temperature on the propagation rate coefficient (kp), reveals the transition state barrier for polycarbonate formation: ΔG‡ = +92.6 ± 2.5 kJ mol–1. The Co­(III)/K­(I) catalyst is also highly active and selective in copolymerizations of other epoxides with carbon dioxide.
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2020-10-27
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