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首页> 外文期刊>ACS Omega >Aminophosphine Palladium Pincer-Catalyzed Carbonylative Sonogashira and Suzuki–Miyaura Cross-Coupling with High Catalytic Turnovers
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Aminophosphine Palladium Pincer-Catalyzed Carbonylative Sonogashira and Suzuki–Miyaura Cross-Coupling with High Catalytic Turnovers

机译:氨基磷钯钳催化羰基化Sonogashira和铃木宫达与高催化失误的交叉耦合

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This work documents the first palladium pincer complex-catalyzed carbonylative Sonogashira (CS) and carbonylative Suzuki–Miyaura (CSM) cross-coupling. Compared to previous protocols, which employ hazardous and toxic solvents, the aminophosphine pincer complex {[C6H3-2,6-(NHP{piperidinyl}2)2]Pd(Cl)} (III) catalyzes both the cross-coupling reactions in propylene carbonate, an eco-friendly and sustainable polar aprotic solvent. Advantageously, employing III allows the CS cross-coupling to be carried out at a palladium loading of 10–4 mol % and the CSM cross-coupling to be carried out at 10–6 mol %, thus resulting in catalytic turnovers of 105 and 107, respectively. Relative comparison of the pincer complex with conventional palladium precursors Pd(OAc)2 and PdCl2(PPh3)2 shows the efficiency and robustness of the pincer complex in effecting higher catalytic activity at low palladium loadings.
机译:这项工作证明了第一款钯钳复合催化的羰基化Sonogashira(CS)和羰基铃木宫(CSM)交叉耦合。与先前的方案相比,采用危险和有毒溶剂,氨基膦钳复合物([C6H3-2,6-(NHP哌啶基)2] Pd(CL)}(III)催化丙烯中的交叉偶联反应碳酸盐,环保和可持续的极性非质子溶剂。有利地,使用III允许CS交叉偶联在10-4mol%的钯负载下进行,并且CSM交叉偶联以10-6摩尔%进行,因此导致催化失误105和107 , 分别。掺杂钯前体Pd(OAC)2和PdCl2(PPH3)2的钳子复合物的相对比较显示了钳络合物在低钯载荷下实现较高催化活性的效率和鲁棒性。

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