Morack Tobias, Myers Tyler E, Karas Lucas J, Hardy Melissa A, Mercado Brandon Q, Sigman Matthew S, Miller Scott J
Department of Chemistry, Yale University, New Haven, Connecticut 06520-8107, United States.
Department of Chemistry, University of Utah, 315 South 1400 East, Salt Lake City, Utah 84112, United States.
J Am Chem Soc. 2023 Oct 18;145(41):22322-22328. doi: 10.1021/jacs.3c08727. Epub 2023 Oct 3.
A first-of-its-kind enantioselective aromatic Finkelstein reaction is disclosed for the remote desymmetrization of diarylmethanes. The reaction operates through a copper-catalyzed C-I bond-forming event, and high levels of enantioselectivity are achieved through the deployment of a tailored guanidinylated peptide ligand. Strategic use of transition-metal-mediated reactions enables the chemoselective modification of the aryl iodide products; thus, the synthesis of a diverse set of otherwise difficult-to-access diarylmethanes with excellent levels of selectivity is realized from a common intermediate. A mixed experimental/computational analysis of steric parameters and substrate conformations identifies the importance of remote conformational effects as a key to achieving high enantioselectivity in this desymmetrization reaction.
首次公开了一种用于二芳基甲烷远程去对称化的对映选择性芳香Finkelstein反应。该反应通过铜催化的C-I键形成过程进行,通过使用定制的胍基化肽配体实现了高水平的对映选择性。过渡金属介导反应的策略性应用能够对芳基碘产物进行化学选择性修饰;因此,从一个共同中间体出发,实现了一系列选择性优异但难以获得的二芳基甲烷的合成。对空间参数和底物构象的实验与计算混合分析确定了远程构象效应作为在该去对称化反应中实现高对映选择性关键的重要性。