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Highly active and robust organic-inorganic hybrid catalyst for the synthesis of cyclic carbonates from carbon dioxide and epoxides

机译:高活性和坚固的有机-无机杂化催化剂,用于从二氧化碳和环氧化物合成环状碳酸酯

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摘要

A high-throughput combinatorial strategy enabled us to find a highly active organic-inorganic hybrid catalyst for the production of cyclic carbonates from CO2 and epoxides. The best hybrid catalyst 1a was prepared by the coupling of 3-(triethoxysilyl) propyltriphenylphosphonium bromide and mesoporous silica, and the organic and inorganic moieties had a synergistic effect on catalytic activity. The pore size of silica was found to be important for catalysis; mesoporous silica with the mean pore size of 19 nm exhibited much better performance than silica with that of 6 nm. The solvent-free and metal-free reactions proceeded successfully under very mild conditions (1 MPa, 90 degrees C, 1 mol% loading of catalyst, 6 h), and the hybrid catalyst could be recycled ten times.
机译:高通量组合策略使我们能够找到一种高活性的有机-无机杂化催化剂,用于从CO2和环氧化物生产环状碳酸酯。最佳的杂化催化剂1a是通过将3-(三乙氧基甲硅烷基)丙基三苯基phosph溴化物和中孔二氧化硅偶联而制备的,有机和无机部分对催化活性具有协同作用。发现二氧化硅的孔径对催化很重要。平均孔径为19 nm的介孔二氧化硅的性能要优于6 nm的二氧化硅。无溶剂和无金属的反应在非常温和的条件下(1 MPa,90摄氏度,催化剂的1摩尔%负载,6小时)成功进行,杂化催化剂可以循环使用十次。

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