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首页> 外文期刊>Advanced synthesis & catalysis >Heteroatom Donor-Decorated Polymer-Immobilized Ionic Liquid Stabilized Palladium Nanoparticles: Efficient Catalysts for Room-Temperature Suzuki-Miyaura Cross-Coupling in Aqueous Media
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Heteroatom Donor-Decorated Polymer-Immobilized Ionic Liquid Stabilized Palladium Nanoparticles: Efficient Catalysts for Room-Temperature Suzuki-Miyaura Cross-Coupling in Aqueous Media

机译:杂原子供体 - 装饰聚合物 - 固定离子液稳定钯纳米颗粒:水性介质中的室温铃木菌属交叉偶联的高效催化剂

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摘要

Palladium nanoparticles stabilized by heteroatom donor-modified polystyrene-based polymer immobilized ionic liquids (PdNP@HAD-PIILP; HAD-PPh2, OMe, NH2, CN, pyrrolidone) are highly efficient catalysts for the Suzuki-Miyaura cross-coupling in aqueous media under mild conditions. Catalyst modified with phosphine was consistently the most efficient as it gave high yields across a range of substrates under mild conditions at low catalyst loadings. Incorporation of polyethylene glycol into the phosphine modified immobilised ionic liquid support improved catalyst efficacy by improving dispersibility and facilitating access to the active site. Moreover, each of the heteroatom modified catalysts was more active than the corresponding unsubstituted imidazolium-based polystyrene benchmark as well as commercial samples of Pd/C. Catalyst generated insitu from either [PdCl4]@PPh2-PIILP or its PEGylated counterpart [PdCl4]@PPh2-PEGPIILP, by reduction with phenylboronic acid, outperformed their pre-formed counterparts for the vast majority of substrates examined. The turnover frequency of 16,300h(-1) obtained at room temperature is one of the highest to be reported for palladium nanoparticle-catalysed Suzuki-Miyaura cross-coupling between 4-bromoacetophenone and phenylboronic acid in aqueous media under such mild conditions.
机译:通过杂原子供体改性的聚苯乙烯的聚合物固定化离子液体稳定的钯纳米粒子(PDNP @ HAT-PIILP; HAVE-PPH2,OME,NH2,CN,吡咯烷酮)是水性培养基中的SUZUKI-MIYYAURA交叉偶联的高效催化剂温和的条件。用膦修饰的催化剂始终如一,最有效,因为它在低催化剂载量下在温和条件下的一系列底物上产生了高产率。通过改善分散性和促进活性位点,将聚乙二醇掺入膦修饰的固定化离子液体支持改善的催化剂功效。此外,每个杂原子改性催化剂比相应的未取代的咪唑鎓基聚苯乙烯基准和Pd / C的商业样品更活跃。通过用苯硼酸还原,通过还原的催化剂产生来自[PdCl4]'@ PPH2-PIILP或其聚乙二醇化对应[PDCL4] @ PPH2-PEGPIILP的INSITU。在室温下获得的16,300h(-1)的周转频率是在这种温和条件下在水性介质中4-溴代戊酰胺和苯基硼酸之间的钯纳米粒子催化的Suzuki-miyaura交叉偶联的最高次数。

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