化学
产量(工程)
催化作用
卡宾
联轴节(管道)
组合化学
反应条件
基础(拓扑)
过程(计算)
系列(地层学)
偶联反应
硼酸
有机化学
过程集成
计算化学
碳酸盐
绿色化学
工艺优化
作者
Aleksei A. Logvinov,Florian Medina,Laurent Lefort,Geert Rombouts,Matthieu Jouffroy,Steven P. Nolan
摘要
High‐throughput experimentation (HTE) was employed to optimize the Suzuki–Miyaura coupling of electronically challenging substrates using a series of N ‐heterocyclic carbene–palladium precatalysts. The screening of 768 conditions revealed that sulfide‐based and PEPPSI‐type Pd‐NHC complexes showed highest activity, with cesium carbonate identified as the most effective base. Further optimization showed that careful adjustment of base and boronic acid loading was essential to minimize side‐product formation, while the addition of water accelerated the process and enabled efficient catalysis at 1 mol % Pd loading. The resulting conditions delivered >98% yield within 1 h, demonstrating how the integration of HTE and targeted optimization can permit the rapid identification of robust and sustainable protocols for cross‐coupling chemistry.
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