Qiao Xuelong, Zhai Shaojun, Xu Jiwei, He Haibing, He Xiao, Hu Lianrui, Gao Shuanhu
Shanghai Key Laboratory of Green Chemistry and Chemical Processes, State Key Laboratory of Petroleum Molecular & Process Engineering, School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200062, China.
Shanghai Frontiers Science Center of Molecule Intelligent Syntheses, School of Chemistry and Molecular Engineering, Wuhu Hospital Affiliated to East China Normal University, East China Normal University, Shanghai 200062, China.
J Am Chem Soc. 2024 Oct 23;146(42):29150-29158. doi: 10.1021/jacs.4c11481. Epub 2024 Oct 9.
We report herein the first asymmetric photoinduced excited-state Nazarov reaction of non-aromatic dicyclic divinyl ketones by using hydrogen-bonding catalysis. The enantioselectivity of photoinduced electrocyclization is highly dependent on the structural features of the substrate and its interaction with chiral catalysts. For the simple dicyclic divinyl ketone substrates, there is no discernible selectivity of the hydrogen bond coordination between the thiourea and carbonyl groups of the substrates in the ground state. However, we found that the direction of the electrocyclization was well controlled in each coordination model and the ,'-dimethylamine motif acts as a base in the regioselective deprotonation process, which leads to the formation of two stereoisomers with high enantioselectivity. Photolysis of dicyclic divinyl ketones bearing a 1,3-dioxolane motif in the presence of bifunctional hybrid peptide-thiourea chiral catalysts gave the tricyclic -hydrofluorenones with good enantioselectivity. Mechanistic and DFT studies suggested that the amide and thiourea groups in the bifunctional chiral catalysts play a key role as H-bond donors, which coordinate with both the carbonyl group and the 1,3-dioxolane motif to provide a more favorable chiral species, and control the direction of the electrocyclization. Due to the presence of the rigid 1,3-dioxolane ring, the deprotonation/protonation process occurs regiospecifically with high driving force. This photo-electrocyclization is mild (room temperature and neutral solution), which results a broad reaction scope and functional group tolerance and demonstrates its synthetic potential in organic synthesis.
我们在此报告通过氢键催化实现的非芳香双环二乙烯基酮的首例不对称光诱导激发态纳扎罗夫反应。光诱导电环化的对映选择性高度依赖于底物的结构特征及其与手性催化剂的相互作用。对于简单的双环二乙烯基酮底物,在基态下,硫脲与底物羰基之间的氢键配位没有明显的选择性。然而,我们发现,在每个配位模型中电环化的方向都得到了很好的控制,并且,'-二甲胺基序在区域选择性去质子化过程中起到碱的作用,这导致形成具有高对映选择性的两种立体异构体。在双功能杂合肽-硫脲手性催化剂存在下,对带有1,3-二氧戊环基序的双环二乙烯基酮进行光解,得到了具有良好对映选择性的三环-氢芴酮。机理和密度泛函理论研究表明,双功能手性催化剂中的酰胺和硫脲基团作为氢键供体发挥关键作用,它们与羰基和1,3-二氧戊环基序配位,提供更有利的手性物种,并控制电环化的方向。由于刚性1,3-二氧戊环的存在,去质子化/质子化过程以高驱动力区域特异性地发生。这种光电环化反应条件温和(室温及中性溶液),反应范围广且官能团耐受性好,展示了其在有机合成中的合成潜力。