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Ligand-controlled insertion regioselectivity accelerates copolymerisation of ethylene with methyl acrylate by cationic bisphosphine monoxide-palladium catalysts

机译:配体控制的插入区域选择性通过阳离子双膦一氧化物-钯催化剂促进乙烯与丙烯酸甲酯的共聚

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摘要

A new series of palladium catalysts ligated by a chelating bisphosphine monoxide bearing diarylphosphino groups (aryl-BPMO) exhibits markedly higher reactivity for ethylene/methyl acrylate copolymerisation when compared to the first generation of alkyl-BPMO-palladium catalysts that contain a dialkylphosphino moiety. Mechanistic studies suggest that the origin of this disparate catalyst behavior is a change in regioselectivity of migratory insertion of the acrylate comonomer as a function of the phosphine substituents. The best aryl-BPMO-palladium catalysts for these copolymerisations were shown to undergo exclusively 2,1-insertion, and this high regioselectivity avoids formation of a poorly reactive palladacycle intermediate. Furthermore, the aryl-BPMO-palladium catalysts can copolymerise ethylene with other industrially important polar monomers.
机译:与第一代含有二烷基膦基部分的烷基-BPMO-钯催化剂相比,通过带有二芳基膦基基团的螯合一氧化二膦一氧化物(芳基-BPMO)连接的新系列钯催化剂对乙烯/丙烯酸甲酯的共聚反应具有显着更高的反应性。机理研究表明,这种完全不同的催化剂行为的根源是丙烯酸酯共聚单体迁移插入的区域选择性随膦取代基的变化而变化。对于这些共聚反应而言,最好的芳基-BPMO-钯催化剂被证明仅进行2,1-插入,这种高区域选择性避免了反应性差的钯环中间体的形成。此外,芳基-BPMO-钯催化剂可以使乙烯与其他工业上重要的极性单体共聚。

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