Xu Yingfan, Liu Dan, Gao Feiyun, Li Shixin, Zhang Xiaoyong, Wang Linqing, Yang Dongxu
Key Laboratory of Preclinical Study for New Drugs of Gansu Province, School of Basic Medical Sciences & Research Unit of Peptide Science, 2019RU066, Lanzhou University, Lanzhou 730000, Gansu, P. R. China.
Institute of Systems and Physical Biology, Shenzhen Bay Laboratory, Shenzhen 518055, P. R. China.
JACS Au. 2023 Dec 21;4(1):164-176. doi: 10.1021/jacsau.3c00584. eCollection 2024 Jan 22.
Dpp-imines are classic model substrates for synthetic method studies. Here, we disclose their powerful use as achiral coligands in metal-catalyzed reactions. It is highly interesting to find that the Dpp-imine can not only act as powerful ligand to create excellent chiral pockets with magnesium complexes but also, more importantly, this coligand can dramatically enhance the catalytic ability of the metal catalyst. The underlying reaction mechanism was extensively explored by conducting a series of experiments, including P NMR studies of the coordination complex between the Dpp-imine coligand and magnesium complexes, ESI capture results, multiple control experiments, studies and comparison of different coligands, H NMR studies on the relationship between the substrate and Dpp-imine coligand, as well as the relationship between the substrate and the full complexes. Furthermore, DFT calculation provided valuable insights in the role of the imine additive and demonstrated that adding the Dpp-imine coligand in the magnesium catalyst can switch the deprotonation/nucleophilic addition steps from a stepwise mechanism to a concerted process during the oxa-cyclization reaction. The crucial factors responsible for the excellent enantioselectivity and enhanced reaction efficiency brought by Dpp-imine have been extracted from the calculation model. These mechanistic experiments and DFT calculation data clearly disclose and prove the powerful and interesting functions of the Dpp-imine coligand, which also direct a novel application of this type of active imine as useful ligands in metal-catalyzed asymmetric reactions.
Dpp-亚胺是合成方法研究中的经典模型底物。在此,我们揭示了它们作为非手性共配体在金属催化反应中的强大用途。非常有趣的是,发现Dpp-亚胺不仅可以作为强大的配体与镁配合物形成优异的手性口袋,而且更重要的是,这种共配体可以显著提高金属催化剂的催化能力。通过进行一系列实验广泛探索了潜在的反应机理,包括对Dpp-亚胺共配体与镁配合物之间配位络合物的P NMR研究、ESI捕获结果、多个对照实验、不同共配体的研究与比较、对底物与Dpp-亚胺共配体之间关系以及底物与完整配合物之间关系的H NMR研究。此外,DFT计算为亚胺添加剂的作用提供了有价值的见解,并表明在镁催化剂中加入Dpp-亚胺共配体可以在氧杂环化反应中将去质子化/亲核加成步骤从分步机理转变为协同过程。从计算模型中提取了导致Dpp-亚胺带来优异对映选择性和提高反应效率的关键因素。这些机理实验和DFT计算数据清楚地揭示并证明了Dpp-亚胺共配体的强大而有趣的功能,这也指导了这种活性亚胺作为有用配体在金属催化不对称反应中的新应用。