Lou Yan, Horikawa Manabu, Kloster Robin A, Hawryluk Natalie A, Corey E J
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts, 02138, USA.
J Am Chem Soc. 2004 Jul 28;126(29):8916-8. doi: 10.1021/ja047064k.
A novel chiral Rh(II) catalyst (1) is introduced for the [2 + 1]-cycloaddition of ethyl diazoacetate to terminal acetylenes and olefins with high enantioselectivity. The catalyst 1 consists of one acetate bridging group and three mono-N-triflyldiphenylimidazoline-2-one bidentate ligands (DPTI) spanning the Rh(II)-Rh(II) metallic center in a structure that was determined by single-crystal X-ray diffraction analysis. A rational mechanism is advanced that provides a straightforward explanation for the enantioselectivity and absolute stereochemical course of the [2 + 1]-cycloaddition reactions. A key element in this explanation is the cleavage of one of the Rh-O bonds of the bridging acetate group in the intermediate Rh-carbene complex to form a new pentacoordinate Rh carbene complex (formally 1.5 valent Rh) that can undergo [2 + 2]-cycloaddition with the C-C pi-bond of the acetylenic or olefinic substrate. Reductive elimination of the resulting adduct affords the cyclopropene or cyclopropane product. The C2-symmetry of the two DPTI ligands orthogonal to the bridging acetate also contributes to the high observed enantioselectivity and mechanistic clarity. The catalyst 1, which functions effectively at 0.5 mol %, can be recovered efficiently for reuse. Its ready availability, robustness, and effectiveness suggest it as a useful addition to the list of practical chiral Rh(II) catalysts for synthesis.
一种新型手性铑(II)催化剂(1)被引入用于重氮乙酸乙酯与末端乙炔和烯烃的[2 + 1]环加成反应,具有高对映选择性。催化剂1由一个乙酸根桥连基团和三个单-N-三氟甲磺酰基二苯基咪唑啉-2-酮双齿配体(DPTI)组成,这些配体跨越铑(II)-铑(II)金属中心,其结构通过单晶X射线衍射分析确定。提出了一种合理的机理,该机理为[2 + 1]环加成反应的对映选择性和绝对立体化学过程提供了直接的解释。该解释中的一个关键要素是中间体铑-卡宾配合物中桥连乙酸根的一个铑-氧键断裂,形成一个新的五配位铑卡宾配合物(形式上为1.5价铑),它可以与炔烃或烯烃底物的碳-碳π键进行[2 + 2]环加成。所得加合物的还原消除得到环丙烯或环丙烷产物。与桥连乙酸根正交的两个DPTI配体的C2对称性也有助于观察到的高对映选择性和机理清晰度。催化剂1在0.5 mol%时有效发挥作用,可以有效地回收再利用。它易于获得、稳定性好且有效,表明它是合成中实用手性铑(II)催化剂列表中的一个有用补充。