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Cu(CH3CN)(4)PF6 immobilized on halloysite as efficient heterogeneous catalyst for oxidation of allylic C-H bonds in olefins under mild reaction condition

机译:Cu(CH3CN)(4)固定在Halloysite上的PF6作为高效的异构催化剂,用于在轻度反应条件下烯烃氧化烯丙基C-H键

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Considering the importance of oxidation of allylic C-H bonds in olefins and the unresolved challenging issues, such as long reaction time and the large quantity of catalyst required, and encouraged by the excellent performance of halloysite as a catalyst support, a novel catalytic system was developed to promote this reaction efficiently. To prepare the catalyst, halloysite was first functionalized with ionic liquid then reacted with 2-aminopyrimidine to afford a potential support, Hal-P. The latter was then used for insitu immobilization of Cu(CH3CN)(4)PF6 and applied to promote the reaction of cycloolefin and tert-butyl p-nitrobenzoperoxoate under mild reaction condition. The results showed that the nature of copper could play an important role in the catalytic activity. Moreover, the presence of ionic liquid and 2-aminopyrimidine in the structure could improve the activity of the final catalyst. Notably, low amounts of catalyst could catalyze the reaction to afford corresponding allylic esters in good yield. It was also found that the reaction was size selective and that cyclic olefins with lower strain could undergo this reaction more effectively. Study of the recyclability of the catalyst confirmed that it was recyclable and could be recovered and recycled for five consecutive reaction runs.
机译:考虑到烯烃中烯丙基CH键氧化和未解决的挑战性问题的重要性,如长的反应时间和所需的大量催化剂,并通过霍氏石的优异性能作为催化剂载体,开发了一种新的催化系统有效促进这种反应。为了制备催化剂,首先用离子液体官能化,然后与2-氨基嘧啶反应,得到潜在的载体Hal-p。然后将后者用于Cu(CH 3 CN)(4)PF6的Insitu固定化,并施用于促进环烯烃和叔丁基对硝基苯甲酸盐在温和反应条件下的反应。结果表明,铜的性质可以在催化活性中发挥重要作用。此外,结构中存在离子液体和2-氨基嘧啶的存在可以改善最终催化剂的活性。值得注意的是,低量的催化剂可以催化反应,得到相应的烯丙基酯,良好的产率。还发现反应是尺寸选择性,并且具有较低菌株的环状烯烃可以更有效地进行该反应。研究催化剂的可回收性证实它是可回收的并且可以回收并再循环5个连续反应。

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