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首页> 外文期刊>Green chemistry >Immobilized bifunctional phosphonium salts as recyclable organocatalysts in the cycloaddition of CO2 and epoxides
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Immobilized bifunctional phosphonium salts as recyclable organocatalysts in the cycloaddition of CO2 and epoxides

机译:将双官能鏻盐作为Co2和环氧化物环加成的可回收有机催化剂

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摘要

Several bifunctional phosphonium salt catalysts were prepared and immobilized on silica and polystyrene supports. The immobilized systems were compared with their homogeneous analogs in cyclic carbonate synthesis. Interestingly, in some cases, higher activities were observed for the immobilized catalysts. The most active system was a phenol-functionalized phosphonium salt supported on a silica surface. The covalent linkage of the phosphonium unit to the silica was verified by solid-state NMR and FT-IR. SEM and EDX measurements revealed a homogeneous distribution of the phosphonium salt on the particle surface. This catalyst facilitated the addition of CO2 to epoxides under mild conditions. The evaluation of the substrate scope and the catalyst recycling were combined in one set of experiments. In 15 consecutive runs, the synthesis of 12 cyclic carbonates in yields of up to 98% was achieved. The investigation of the catalyst after the recycling experiments revealed the loss of the original anion (bromide) as well as a decrease in the number of phosphonium units, which explained the observed deactivation of the catalyst during the recycling experiments.
机译:制备几个双官能鏻盐催化剂并固定在二氧化硅和聚苯乙烯载体上。将固定化的系统与其环碳酸酯合成中的均相类似物进行比较。有趣的是,在某些情况下,针对固定催化剂观察到更高的活性。最活跃的系统是在二氧化硅表面负载的酚官能化鏻盐。通过固态NMR和FT-IR验证鏻单元与二氧化硅的共价连接。 SEM和EDX测量显示颗粒表面上鏻盐的均匀分布。该催化剂在温和条件下促进将CO 2加入环氧化物。将底物范围和催化剂再循环的评价组合在一组实验中。连续15次运行中,实现了12种循环碳酸盐的合成,得到高达98%的碳酸盐。再循环实验后催化剂的研究显示出原始阴离子(溴化物)的损失以及鏻单元数量的减少,这解释了在再循环实验期间观察到催化剂的失活。

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  • 来源
    《Green chemistry》 |2017年第18期|共11页
  • 作者单位

    Univ Rostock Leibniz Inst Catalysis eV Albert Einstein Str 29A D-18059 Rostock Germany;

    Univ Rostock Leibniz Inst Catalysis eV Albert Einstein Str 29A D-18059 Rostock Germany;

    Univ Med Rostock Med Biol &

    Electron Microscopy Ctr Strempelstr 14 D-18057 Rostock Germany;

    Berlin Univ Technol Inst Chem Str 17 Juni 135 D-10623 Berlin Germany;

    Univ Rostock Inst Chem Tech Chem Albert Einstein Str 3A D-18059 Rostock Germany;

    Univ Rostock Leibniz Inst Catalysis eV Albert Einstein Str 29A D-18059 Rostock Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;数理科学和化学;化学工业废物处理与综合利用;
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