Jiangsu Collaborative Innovation Center of Biomedical Functional Materials and Key Laboratory of Biofunctional Materials of Jiangsu Province, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, P. R. China.
Angew Chem Int Ed Engl. 2022 Jun 7;61(23):e202203835. doi: 10.1002/anie.202203835. Epub 2022 Apr 6.
Catalyst-controlled regiodivergent catalysis is a vital chemical tool that allows efficient access to large collections of structurally diverse molecules from a common precursor but remains a challenge. We report a catalyst-controlled, tunable, and predictable regiodivergency in transforming the internal aliphatic propargyl esters into diverse libraries of highly substituted 1,3-dienyl and allyl products by Pd-catalysis. Depending on the ligand employed, the palladium catalyst can involve two typical approaches: electrophilic palladium catalysis and a sequential oxidative addition-reductive elimination pathway. This regiodivergent protocol endows facile access to four regioisomers with high regio- and stereoselectivity from the common propargyl esters. In terms of synthetic utility, a notable feature of this protocol is amenable to structural diversification of bioactive relevant molecules, enabling rapid assembly of many useful structural analogs of pharmaceutical candidates.
催化剂控制的区域选择性催化是一种重要的化学工具,它允许从常见的前体中高效地获得大量结构多样的分子,但这仍然是一个挑战。我们报告了一种催化剂控制的、可调谐的、可预测的区域选择性,通过钯催化,可以将内部脂肪族炔丙基酯转化为多种高取代的 1,3-二烯基和烯丙基产物。根据所使用的配体,钯催化剂可以涉及两种典型的方法:亲电钯催化和顺序氧化加成-还原消除途径。这种区域选择性的方案提供了从常见的炔丙基酯中以高区域和立体选择性获得四种区域异构体的简便方法。就合成实用性而言,该方案的一个显著特点是能够对生物活性相关分子进行结构多样化,从而能够快速组装许多药物候选物的有用结构类似物。