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Palladium-Catalyzed Oxidative Carbonylation of AlkyI and Aryl Indium Reagents with CO under Mild Conditions

机译:在温和条件下用CO催化钯催化AlkyI和芳基铟试剂的氧化羰基化

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摘要

CO now can react with organoindium reagents. A novel palladium-catalyzed oxidative carbonylation reaction of organoindium reagents by CO gas with desyl chloride as oxidant was developed in supplementation with the classical methods for preparation of carboxylic acid derivatives. Primary, secondary alkyl indium reagents with β-hydrogens and aryl indium reagents were suitable substrates, and the reaction could be carried out at 60℃ under 50 psi CO. Carbonylation of alkyl indium reagents can occur smoothly without additional base. Although the indium reagents were prepared from corresponding Grignard reagents (at low temperature), they displayed full compatibility with various functional groups under the protic reaction conditions. Preliminary mechanistic studies including stoichiometric and catalytic reaction examination provided evidence to support the operation of the mechanism consisted of oxidative addition of deslyl chloride to Pd(0) and quick tautomerization to give a palladium enolate species II (ROPdCI), displacement of the enolate group in II by R~2OH, followed by CO insertion to give alkoxycarbonyl palladium complex V, which undergoes transmetalation with R~1_3ln and reductive elimination to afford the product and a Pd(0) species. In this mechanism, the alkoxycarbonyl group was transferred to the palladium center prior to the alkyl group, different from traditional ways initiated from oxidative addition of alkyl halides to a Pd(0) species.
机译:现在,CO可与有机铟试剂反应。补充经典的制备羧酸衍生物的方法,开发了一种新型的钯催化的有机铟试剂,以CO气为溶剂,以去甲酰氯为氧化剂进行氧化。带有β-氢的烷基仲铟试剂和芳基铟试剂是合适的底物,反应可以在60℃,50 psi CO下进行。烷基铟试剂的羰基化反应可以顺利进行,而无需额外的碱。尽管铟试剂是由相应的格氏试剂制备的(在低温下),但它们在质子反应条件下显示出与各种官能团的完全相容性。包括化学计量和催化反应检查在内的初步机理研究提供了证据支持该机理的运行,该机理包括将氯化二烯丙基氯化物氧化添加到Pd(0)中以及快速互变异构以生成烯醇钯II(ROPdCI),该烯醇基团在通过R 2OH进行II,然后插入CO以得到烷氧基羰基钯配合物V,其用R 1_3ln进行金属转移并还原消除得到产物和Pd(0)物种。在这种机理中,烷氧基羰基先于烷基转移到钯中心,这与传统的方法不同,传统方法是将卤代烷氧化成Pd(0)物种。

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