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首页> 外文期刊>Journal of the American Chemical Society >Pinwheel-Shaped Tetranuclear Organoboron Catalysts for Perfectly Alternating Copolymerization of CO_2 and Epichlorohydrin
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Pinwheel-Shaped Tetranuclear Organoboron Catalysts for Perfectly Alternating Copolymerization of CO_2 and Epichlorohydrin

机译:轮轮形四核有机摩洛催化剂,用于完美交替CO_2和表氯醇的共聚

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摘要

The copolymerization of carbon dioxide (CO_2) and epoxides to produce aliphatic polycarbonates is a burgeoning technology for the large-scale utilization of CO_2 and degradable polymeric materials. Even with the wealth of advancements achieved over the past 50 years on this green technology, many challenges remain, including the use of metal-containing catalysts for polymerization, the removal of the chromatic metal residue after polymerization, and the limited practicable epoxides, especially for those containing electron-withdrawing groups. Herein, we provide kinds of pinwheel-shaped tetranuclear organoboron catalysts for epichlorohydrin/CO_2 copolymerization with >99% polymer selectivity and quantitative CO_2 uptake (>99% carbonate linkages) under mild conditions (25-40°C, 25 bar of CO_2). The produced poly(chloropropylene carbonate) has the highest molecular weight of 36.5 kg/mol and glass transition temperature of 45.4°C reported to date. The energy difference (ΔE_a = 60.7 kJ/mol) between the cyclic carbonate and polycarbonate sheds light on the robust performance of our metal-free catalyst. Control experiments and density functional theory (DFT) calculations revealed a cyclically sequential copolymerization mechanism. The metal-free feature, high catalytic performance under mild conditions, and no trouble with chromaticity for the produced polymers imply that our catalysts are practical candidates to advance the CO_2-based polycarbonates.
机译:二氧化碳(CO_2)和环氧化物的共聚制备脂族聚碳酸酯是用于大规模使用CO_2和可降解的聚合物材料的爆炸技术。即使在这种绿色技术过去50年的大量进步方面,仍然存在许多挑战,包括使用含金属催化剂进行聚合,聚合后的含色金属残余物,以及有限的可行性环氧化物,特别是用于那些含有电子取出的组。在此,我们在温和条件下提供具有> 99%的聚合物选择性和定量CO_2摄取(> 99%碳酸酯键)的对氯醇/ CO_2共聚的各种轮转型四核心催化剂(25-40℃,25巴的CO_2)。所生产的聚(氯丙烯碳酸亚丙酯)的分子量为36.5kg / mol,迄今为止玻璃化转变温度为45.4°C。环状碳酸酯和聚碳酸酯之间的能量差(ΔE_A= 60.7kJ / mol)在无金属催化剂的鲁棒性能下光。对照实验和密度函数理论(DFT)计算揭示了一种循环顺序共聚机制。无金属条件下的无金属特征,高催化性能,并且对于所产生的聚合物的色度没有麻烦意味着我们的催化剂是实用的候选,以提前基于CO_2的聚碳酸酯。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第9期|3455-3465|共11页
  • 作者单位

    MOE Laboratory of Macromolecular Synthesis and Functionalization Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province Department of Polymer Science and Engineering Zhejiang University Hangzhou 310027 People's Republic of China;

    MOE Laboratory of Macromolecular Synthesis and Functionalization Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province Department of Polymer Science and Engineering Zhejiang University Hangzhou 310027 People's Republic of China;

    MOE Laboratory of Macromolecular Synthesis and Functionalization Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province Department of Polymer Science and Engineering Zhejiang University Hangzhou 310027 People's Republic of China;

    MOE Laboratory of Macromolecular Synthesis and Functionalization Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province Department of Polymer Science and Engineering Zhejiang University Hangzhou 310027 People's Republic of China;

    MOE Laboratory of Macromolecular Synthesis and Functionalization Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province Department of Polymer Science and Engineering Zhejiang University Hangzhou 310027 People's Republic of China;

    MOE Laboratory of Macromolecular Synthesis and Functionalization Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province Department of Polymer Science and Engineering Zhejiang University Hangzhou 310027 People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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