Ma Xingxing, Tan Mengwei, Li Luo, Zhong Zihao, Li Puhui, Liang Jinchao, Song Qiuling
Key Laboratory of Molecule Synthesis and Function Discovery, Fujian Province University, College of Chemistry, Fuzhou University, Fuzhou, Fujian, China.
Nat Chem. 2024 Jan;16(1):42-53. doi: 10.1038/s41557-023-01396-7. Epub 2024 Jan 5.
Asymmetric synthesis based on a metallate shift of tetracoordinate borons is an intriguing and challenging topic. Despite the construction of central chirality from tetracoordinate boron species via a 1,2-metallate shift, catalytic asymmetric synthesis of axially chiral compounds from such boron 'ate' complexes is an ongoing challenge. Axially chiral alkenes have received great attention due to their unique characteristics and intriguing molecular scaffolds. Here we report an enantioselective nickel-catalysed strategy for the construction of axially chiral alkenes via a 1,3-metallate shift of alkynyl tetracoordinate boron species. The chemoselectivity, regioselectivity and atroposelectivity can be regulated and well-controlled from readily accessible starting materials with a cheap transition-metal catalyst. Downstream transformations indicate the powerful conversion ability of such compounds in this protocol, and late-stage elaborations of bioactive compounds can also be achieved. Mechanistic experiments reveal that regioselective syn-addition of an aryl-Ni complex with a carbon-carbon triple bond and subsequent 1,3-phenyl migration are the two key steps for the synthesis of axially chiral alkenes.
基于四配位硼的金属转移的不对称合成是一个引人入胜且具有挑战性的课题。尽管通过1,2-金属转移从四配位硼物种构建中心手性,但从这种硼“酸根”配合物催化不对称合成轴手性化合物仍是一个持续的挑战。轴手性烯烃因其独特的特性和有趣的分子骨架而备受关注。在此,我们报道了一种对映选择性镍催化策略,通过炔基四配位硼物种的1,3-金属转移来构建轴手性烯烃。利用廉价的过渡金属催化剂,从容易获得的起始原料出发,可以调节和很好地控制化学选择性、区域选择性和阻转选择性。下游转化表明该方案中此类化合物具有强大的转化能力,并且还可以实现生物活性化合物的后期修饰。机理实验表明,芳基镍配合物与碳-碳三键的区域选择性顺式加成以及随后的1,3-苯基迁移是合成轴手性烯烃的两个关键步骤。