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Immobilized Supramolecular Systems as Efficient Synzymes for CO2 Activation and Conversion

机译:固定化超分子系统的效率合成酶对二氧化碳活化和转换

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摘要

Abstract Supramolecular catalysis can provide distinct advantages for the catalytic conversion of CO2 into carbonates by cycloaddition to epoxides. For example, the absence of metals in the catalytic site, and the easy design for optimization. The incorporation of multiple functionalities in pseudopeptidic macrocycles with a pendant arm allows catalytic systems to be obtained where halide anions (nucleophilic activating agents for epoxides), hydrogen bond acceptor sites (activating agents for epoxides and stabilizing sites for anionic intermediates), and amine groups (Lewis basic sites for activating CO2) are in proximity. This allows a high activity in the cycloaddition of CO2 to styrene oxide under mild conditions (turnover number (TON) = 900, CO2 balloon, 100 °C, 5 h). The primary amino groups in the arm facilitate the immobilization of these macrocyclic structures in cross‐linked polymeric matrices containing ammonium halide fragments. Such multifunctional insoluble polymers afford excellent catalytic results with high TON and turnover frequency values and remarkable productivities (>10 gprod gresin−1 h−1). This activity is maintained for a variety of epoxides and is retained after several catalytic runs. Their performance is significantly higher than those reported for most heterogenous supramolecular catalytic systems for CO2 transformation into carbonates.
机译:抽象的超分子催化可以提供不同的催化转化的优势二氧化碳转化为碳酸盐的环加成作用环氧化合物。催化部位,简单的设计优化。功能在pseudopeptidic重点吊坠的手臂使催化系统获得卤化物离子(亲核的地方激活剂对环氧化合物),氢键受体网站(激活剂对环氧化合物阴离子中间体和稳定网站),和胺组(刘易斯基本网站激活CO2)在接近。高二氧化碳的环加成作用的活动在温和条件下氧化苯乙烯(营业额数量(吨)= 900,二氧化碳气球,100°C, h)。主要的氨基酸组在手臂上方便这些大环的固定结构在横量聚合物矩阵有关含有卤化物铵碎片。多功能不溶性聚合物负担优秀的催化高吨和结果周转频率值和显著生产力(> 10 gprod gresin−1 h−1)。活动是维持各种环氧化合物后,保留几个催化应用。他们的性能明显高于那些报道大多数异构超分子催化二氧化碳系统转换成碳酸盐。

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