Department of Chemistry, Zhejiang Sci-Tech University, Xiasha Campus, Hangzhou, Zhejiang Province, 310018, PR China.
ChemSusChem. 2013 Feb;6(2):229-41. doi: 10.1002/cssc.201200683. Epub 2013 Jan 10.
Palladium-catalyzed coupling reactions have become a powerful tool for advanced organic synthesis. This type of reaction is of significant value for the preparation of pharmaceuticals, agrochemicals, as well as advanced materials. Both, academic as well as industrial laboratories continuously investigate new applications of the different methodologies. Clearly, this area constitutes one of the major topics in homogeneous catalysis and organic synthesis. Among the different palladium-catalyzed coupling reactions, several carbonylations have been developed and widely used in organic syntheses and are even applied in the pharmaceutical industry on ton-scale. Furthermore, methodologies such as the carbonylative Suzuki and Sonogashira reactions allow for the preparation of interesting building blocks, which can be easily refined further on. Although carbonylative coupling reactions of aryl halides have been well established, palladium-catalyzed oxidative carbonylation reactions are also interesting. Compared with the reactions of aryl halides, oxidative carbonylation reactions offer an interesting pathway. The oxidative addition step could be potentially avoided in oxidative reactions, but only few reviews exist in this area. In this Minireview, we summarize the recent development in the oxidative carbonylation reactions.
钯催化偶联反应已成为先进有机合成的有力工具。这种类型的反应对于制备药物、农用化学品以及先进材料具有重要价值。学术和工业实验室都在不断探索不同方法的新应用。显然,这一领域构成均相催化和有机合成的主要课题之一。在不同的钯催化偶联反应中,已经开发并广泛应用于有机合成中的几种羰基化反应,甚至在制药工业中也应用于吨级规模。此外,如羰基化 Suzuki 和 Sonogashira 反应等方法可用于制备有趣的构建块,这些构建块可以很容易地进一步精制。尽管芳基卤化物的羰基偶联反应已经得到很好的建立,但钯催化的氧化羰基化反应也很有趣。与芳基卤化物的反应相比,氧化羰基化反应提供了一条有趣的途径。在氧化反应中,氧化加成步骤可能被避免,但该领域只有少数综述存在。在这篇综述中,我们总结了氧化羰基化反应的最新发展。