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A new air and moisture stable robust bio-polymer based palladium catalyst for highly efficient synthesis of biaryl compounds

机译:一种新的空气和水分稳定的稳健生物聚合物基钯催化剂,用于高效合成前列化合物

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摘要

The designs of robust natural polymer based catalysts are important for catalytic systems in the view of industrial purposes and green chemistry. In this study, a new air and moisture stable robust starch-based Pd(II) catalyst was designed and characterized with different analytical techniques. Catalytic behavior of the prepared robust palladium(II) catalyst was investigated in the Suzuki coupling reactions of aryl iodides, aryl bromides and aryl chlorides with phenyl boronic acid under microwave irradiation using very short reaction time. Sustainability and reusability of the catalyst was also explored under benign conditions. As a result of the catalytic tests, the green catalyst gave excellent biphenyl yields, TONs and TOFs with very low catalyst loading. More importantly, the robust catalyst has showed that it can be reused several times without important loses from its activity in the coupling reactions. The study showed that the robust starch-based Pd(II) catalyst had more advantages than other catalysts reported in the literature due to its economic, sustainable, thermal durable, environmentally friendly and practice properties.
机译:在工业目的和绿色化学观察中,鲁棒天然聚合物基催化剂的设计对于催化系统很重要。在该研究中,设计了一种新的空气和水分稳定的稳健淀粉的PD(II)催化剂,并用不同的分析技术表征。在微波辐照下使用非常短的反应时间,在微波辐射下,在芳基碘化物,芳基溴化物和芳基氯化物的芳基偶联反应中研究制备的鲁棒钯(II)催化剂的催化性能。在良性条件下还探讨了催化剂的可持续性和可重用性。由于催化试验,绿色催化剂具有优异的联苯产率,吨和TOFS,催化剂负荷非常低。更重要的是,鲁棒催化剂表明,在其在偶联反应中的活性中,可以重复使用几次,而不重要。该研究表明,由于其经济,可持续,热耐用,环保和实践属性,稳健的基于淀粉的Pd(II)催化剂具有比文献中报告的其他催化剂更多的优点。

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