Zhu Ren-Yi, Chen Long, Hu Xiao-Si, Zhou Feng, Zhou Jian
Shanghai Engineering Research Center of Molecular Therapeutics and New Drug Development , China . Email:
Shanghai Key Laboratory of Green Chemistry and Chemical Process , East China Normal University , Shanghai 200062 , China.
Chem Sci. 2019 Nov 6;11(1):97-106. doi: 10.1039/c9sc04938j. eCollection 2020 Jan 7.
We report the highly enantioselective synthesis of -chiral tertiary phosphine oxides featuring an ethynyl group Cu(i)-catalyzed azide-alkyne cycloaddition. Newly developed chiral pyridinebisoxazolines (PYBOX) bearing a bulky C4 shielding group play an important role in achieving excellent enantioselectivity while suppressing side bis-triazoles formation in desymmetrizing prochiral diethynylphosphine oxides. Notably, by tuning the size of the C4 shielding group, it is possible to achieve excellent remote enantiofacial control in desymmetrizing phosphole oxide-diynes with the prochiral -center farther from the ethynyl group . Time-dependent enantioselectivity is observed for these desymmetric CuAAC reactions, suggesting a synergic combination of a desymmetrization and a kinetic resolution, and our ligands prove to be better than unmodified PYBOX in both steps. This finding contributes to a highly enantioselective kinetic resolution of racemic ethynylphosphine oxides. The resulting chiral ethynylphosphine oxides are versatile -chiral synthons, which can undergo a number of diversifying reactions to enrich structural diversity.
我们报道了通过铜(I)催化的叠氮化物-炔烃环加成反应实现具有乙炔基的手性叔膦氧化物的高对映选择性合成。新开发的带有庞大C4屏蔽基团的手性吡啶双恶唑啉(PYBOX)在实现优异的对映选择性方面发挥了重要作用,同时抑制了前手性二乙炔基膦氧化物去对称化过程中副产物双三唑的形成。值得注意的是,通过调节C4屏蔽基团的大小,可以在对具有远离乙炔基的前手性中心的氧化膦二炔进行去对称化时实现出色的远程对映面控制。对于这些去对称化的铜催化的叠氮化物-炔烃环加成反应,观察到了时间依赖性对映选择性,这表明去对称化和动力学拆分的协同组合,并且我们的配体在这两个步骤中都被证明比未修饰的PYBOX更好。这一发现有助于实现外消旋乙炔基膦氧化物的高对映选择性动力学拆分。所得的手性乙炔基膦氧化物是通用的手性合成子,可进行多种多样化反应以丰富结构多样性。