School of Chemistry , University of Manchester , Manchester M13 9PL , United Kingdom.
School of Chemistry and Molecular Engineering , East China Normal University , 200062 Shanghai , China.
J Am Chem Soc. 2019 Sep 11;141(36):14249-14256. doi: 10.1021/jacs.9b06127. Epub 2019 Aug 26.
We report on the stereoselective synthesis of trefoil knots of single topological handedness in up to 90% yield (over two steps) through the formation of trimeric circular helicates from ligand strands containing either imine or, unexpectedly, amide chelating units and metal ion templates of the appropriate coordination character (zinc(II) for imines; cobalt(III) for amides). The coordination stereochemistry of the octahedral metal complexes is determined by asymmetric carbon centers in the strands, ultimately translating into trefoil knots that are a single enantiomer, both physically and in terms of their fundamental topology. Both the imine-zinc and amide-cobalt systems display self-sorting behavior, with racemic ligands forming knots that individually contain only building blocks of the same chirality. The knots and the corresponding trimeric circular helicate intermediates (Zn(II) complex for the imine ligands; Co(III) complex for the amide ligands) were characterized by nuclear magnetic resonance spectroscopy, mass spectrometry, and X-ray crystallography. The latter confirms the trefoil knots as 84-membered macrocycles, with each of the metal ions sited at a crossing point for three regions of the strand. The stereochemistry of the octahedral coordination centers imparts alternating crossings of the same handedness within each circular helicate. The expression of chirality of the knotted molecules was probed by circular dichroism: The topological handedness of the demetalated knots was found to have a greater effect on the CD response than the Euclidean chirality of an individual chiral center.
我们报告了通过含有亚胺或酰胺螯合单元和具有适当配位性质的金属离子模板(锌(II)用于亚胺;钴(III)用于酰胺)的配体链形成三聚体环状螺旋体,以高达 90%的产率(两步)立体选择性合成单拓扑手性三叶结。八面体金属配合物的配位立体化学由链中的不对称碳原子决定,最终转化为三叶结,既是单一对映异构体,又是其基本拓扑结构。亚胺-锌和酰胺-钴系统都表现出自排序行为,外消旋配体形成的结各自仅包含相同手性的构建块。结和相应的三聚体环状螺旋体中间体(亚胺配体的 Zn(II) 配合物;酰胺配体的 Co(III) 配合物)通过核磁共振波谱、质谱和 X 射线晶体学进行了表征。后者证实三叶结是 84 元大环,每个金属离子位于链的三个区域的交点处。八面体配位中心的立体化学赋予每个环状螺旋体中相同手性的交替交叉。通过圆二色性探测了扭结分子的手性表达:脱金属结的拓扑手性对 CD 响应的影响大于单个手性中心的欧几里得手性。