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首页> 外文期刊>Journal of environmental sciences >Palladium-phosphinous acid complexes catalyzed Suzuki cross-coupling reaction of heteroaryl bromides with phenylboronic acid in water/alcoholic solvents
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Palladium-phosphinous acid complexes catalyzed Suzuki cross-coupling reaction of heteroaryl bromides with phenylboronic acid in water/alcoholic solvents

机译:钯-亚膦酸络合物在水/醇溶剂中催化杂芳基溴化物与苯基硼酸的Suzuki交叉偶联反应

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Highly active, air-stable and water-soluble palladium-phosphinous acid complexes have been applied to Suzuki cross-coupling reaction of heteroaryl bromides under mild conditions in water/alcoholic solvents. Suzuki cross-coupling reaction of heteroaryl bromides with phenylboronic acid occurred efficiently using palladium phosphinous acid complexes (POPd) and phase transfer catalyst (tetrabutylammonium bromide and polyethylene glycol) in water/ethanol mixture, water/propanol mixture and neat water respectively, the corresponding yields of cross-coupling heteroaryl-aryls were satisfied. The tert-butyl substituted ligand di-tert-butylphosphino in combination with POPd was found to be more active than the same family derived catalysts dipalladium complexes POPd1 and POPd2, and other two kinds of Pd-catalysts Pd(PPh_3)_4 and Pd_2(dba)_3. The mechanism of Suzuki cross-coupling reaction between heteroaryl bromides and phenylboronic acid in water was proposed with respect to the key role of phase transfer catalyst on the transmetallation step. Compared with other solid phase transfer catalysts, TBAB was tested as the ideal one. The alkalinity of base and the molar proportion between POPd and TBAB were investigated in water and alcoholic solvents. Notably, in the presence of TBAB adding alcoholic solvents into water enhanced the yields of target products. However in terms of the liquid phase transfer catalyst of PEGs, mixing water into PEGs could slightly decrease the yields with respect to the water free PEGs bulk phase, which was probably due to the homogenous liquid conditions in pure PEGs and weak interactions between PEGs and heteroaryl bromide molecules in water depending on their molecular chain lengths.
机译:高活性,空气稳定和水溶性的钯次膦酸络合物已被用于杂芳基溴化物在温和条件下于水/醇类溶剂中的Suzuki交叉偶联反应。在水/乙醇混合物,水/丙醇混合物和纯水中分别使用钯次膦酸络合物(POPd)和相转移催化剂(溴化四丁基铵和聚乙二醇)有效地发生了杂芳基溴化物与苯基硼酸的Suzuki交叉偶联反应。满足交叉偶联的杂芳基-芳基。发现叔丁基取代的配体二叔丁基膦与POPd组合比同族衍生的催化剂二钯配合物POPd1和POPd2以及其他两种Pd催化剂Pd(PPh_3)_4和Pd_2(dba)具有更高的活性)_3。针对相转移催化剂在金属转移步骤中的关键作用,提出了杂芳基溴化物与苯硼酸在水中的铃木交叉偶联反应机理。与其他固相转移催化剂相比,TBAB被测试为理想的催化剂。在水和醇溶剂中研究了碱的碱度以及POPd和TBAB之间的摩尔比。值得注意的是,在TBAB存在下,向水中添加醇类溶剂可提高目标产物的收率。然而,就PEG的液相转移催化剂而言,将水混入PEG可能会相对于无水PEG本体相稍微降低收率,这可能是由于纯PEG中的液相条件均一以及PEG与杂芳基之间的相互作用较弱所致。水中的溴化物分子取决于分子链的长度。

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