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Alternating copolymerization of CO_2 and styrene oxide with Co(ra)-based catalyst systems: differences between styrene oxide and propylene oxide

机译:CO_2和环氧乙烷与基于Co(ra)的催化剂体系的交替共聚:环氧乙烷和环氧丙烷之间的区别

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摘要

A detailed study of the difference in reactivity of the copolymerization reactions of styrene oxide vs. propylene oxide with carbon dioxide utilizing binary (salen)cobalt(Ⅲ) catalyst systems to provide perfectly alternating copolymers is reported. This investigation focuses on the discrepancy exhibited by these two terminal epoxides for the preference for C-O bond cleavage during the ring-opening process. It was found that the nucleophilic ring-opening of styrene oxide occurs predominantly at the methine Cα-O bond which leads to an inversion of configuration at the methine carbon center. This tendency results in a significantly lower reactivity as well as a deterrent for synthesizing stereoregular poly(styrene carbonate) when compared to the propylene oxide/CO_2 process. The chiral environment about the metal center had a notable effect on the regioselectivity of the ring-opening step for styrene oxide, with the methylene Cβ-O bond being preferentially cleaved. Using a binary catalyst system composed of an unsymmetrical (S,S,S)-salenCo(m) complex in conjunction with the onium salt PPNY (PPN = bis(triphenylphosphine)iminium, and Y = 2,4-dinitrophenoxy), a highly regioregular ring-opening step was observed with a concomitant 96% retention of configuration at the methine carbon center.
机译:详细报道了利用二元(salen)钴(Ⅲ)催化剂体系提供完全交替的共聚物,对氧化苯乙烯与环氧丙烷与二氧化碳共聚反应的反应性进行了详细研究。这项研究集中在开环过程中,这两个末端环氧化物对C-O键断裂的偏好表现出差异。发现苯乙烯氧化物的亲核开环主要发生在次甲基Cα-O键上,这导致次甲基碳中心的构型反转。当与环氧丙烷/ CO 2工艺相比时,这种趋势导致显着降低的反应性以及对合成立构规整的聚碳酸苯乙烯的阻挠作用。金属中心附近的手性环境对开环步骤对苯乙烯氧化物的区域选择性有显着影响,其中亚甲基Cβ-O键优先被裂解。使用由不对称(S,S,S)-salenCo(m)配合物与鎓盐PPNY(PPN =双(三苯基膦)亚胺,Y = 2,4-二硝基苯氧基)组成的二元催化剂体系观察到区域规则的开环步骤,同时在次甲基碳中心保留了96%的构型。

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  • 来源
    《Energy & environmental science》 |2011年第12期|p.5084-5092|共9页
  • 作者单位

    State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian, 116024, China;

    Department of Chemistry, Texas A&M University, College Station,Texas, 77843, USA;

    State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian, 116024, China;

    State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian, 116024, China;

    State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian, 116024, China;

    State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian, 116024, China;

    Department of Chemistry, Texas A&M University, College Station,Texas, 77843, USA;

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