Morris Avery O, Barriault Louis
Center for Catalysis Research and Innovation, Department of Chemistry and Biomolecular Sciences, University of Ottawa, 10 Marie-Curie, Ottawa, Canada, K1 N 6 N5.
Chemistry. 2024 May 8;30(26):e202400642. doi: 10.1002/chem.202400642. Epub 2024 Mar 25.
The need for synthetic methodologies capable of rapidly altering molecular structure are in high demand. Most existing methods to modify scaffolds rely on net exothermicity to drive the desired transformation. We sought to develop a general strategy for the cleavage of C-C bonds β to hydroxyl groups independent of inherent substrate strain. To this end we have applied a multicatalytic cerium photoredox-based system capable of activating O-H bonds in lactols to deliver formate esters. The same system is also capable of effecting hydrodecarboxylation and hydrodecarbonylation reactions. Initial mechanistic probes demonstrate atomic chlorine (Cl⋅) is generated under the reaction conditions, but substrate activation through cerium-alkoxides or -carboxylates cannot be ruled out.
对能够快速改变分子结构的合成方法的需求非常高。大多数现有的修饰支架的方法依靠净放热来驱动所需的转化。我们试图开发一种用于切割与羟基相邻的碳-碳键的通用策略,而不依赖于固有的底物应变。为此,我们应用了一种基于多催化铈光氧化还原的体系,该体系能够激活内酯中的氧-氢键以生成甲酸酯。同一体系也能够进行加氢脱羧和加氢脱羰反应。初步的机理探索表明,在反应条件下会生成原子氯(Cl⋅),但不能排除通过铈醇盐或铈羧酸盐对底物进行活化的可能性。