School of Chemistry , University of Manchester , Oxford Road , Manchester M13 9PL , U.K.
J Am Chem Soc. 2019 Apr 10;141(14):6054-6059. doi: 10.1021/jacs.9b01819. Epub 2019 Mar 29.
We report on the stereoselective synthesis of both molecular granny and square knots through the use of lanthanide-complexed overhand knots of specific handedness as three-crossing "entanglement synthons". The composite knots are assembled by combining two entanglement synthons (of the same chirality for a granny knot; of opposite handedness for a square knot) in three synthetic steps: first, a CuAAC reaction joins together one end of each overhand knot. Ring-closing olefin metathesis (RCM) then affords the closed-loop knot, locking the topology. This allows the lanthanide ions necessary for stabilizing the entangled conformation of the synthons to subsequently be removed. The composite knots were characterized by H and C NMR spectroscopy and mass spectrometry and the chirality of the knot stereoisomers compared by circular dichroism. The synthetic strategy of combining building blocks of defined stereochemistry (here overhand knots of Λ- or Δ-handed entanglement) is reminiscent of the chiron approach of using minimalist chiral synthons in the stereoselective synthesis of molecules with multiple asymmetric centers.
我们报告了通过使用特定手性的镧系复合物上手结作为三交叉“缠结合成子”,立体选择性合成分子祖母结和方结。通过三个合成步骤将两个缠结合成子(对于祖母结为同手性;对于方结为相反手性)组合在一起,即可组装复合结:首先,CuAAC 反应将每个上手结的一端连接在一起。然后,闭环烯烃复分解(RCM)得到闭环结,锁定拓扑结构。这允许随后去除稳定合成子缠结构象所需的镧系离子。通过核磁共振氢谱和碳谱以及质谱对复合结进行了表征,并通过圆二色性比较了键立体异构体的手性。这种将具有确定立体化学的构建块(这里是 Λ 或 Δ 手性缠结的上手结)组合在一起的合成策略让人联想到使用最小手性合成子在具有多个不对称中心的分子的立体选择性合成中的手性方法。