Department of Applied Chemistry, Graduate School of Science and Engineering, Tokyo Institute of Technology, O-okayama, Meguro-ku, Tokyo 152-8552, Japan.
J Am Chem Soc. 2010 Nov 24;132(46):16637-50. doi: 10.1021/ja107597w. Epub 2010 Oct 28.
The mechanism of Michael addition reactions of 1,3-dicarbonyl compounds to cyclic enones catalyzed by bifunctional Ru catalysts bearing N-sulfonylated (R,R)-DPEN ligands (DPEN = (R,R)-1,2-diphenylethylenediamine) was studied by NMR and DFT computational analyses. NMR investigation of the stoichiometric reactions of chiral amido Ru complexes, Ru(N-sulfonylated dpen)(η(6)-arene) 1a-c, with dimethyl malonate 2 and β-keto ester 3 revealed that at decreased temperatures deprotonation proceeds in a stereoselective manner to provide amine complexes. The reaction with malonic ester 2 provided exclusively C-bound amino Ru complexes 6a,c, while the reaction of β-keto ester 3 gave an equilibrium mixture of rapidly interconverting C- and O-bound complexes. The structures of C-bound Ru complex 6c and O-bound Ru complex 9c were determined by single crystal X-ray analysis. A computational study showed that the enatioselective C-C bond formation proceeds through intermediate formation of chelating ion pairs that coordinate a molecule of enone via the Ru metal center producing a highly organized environment for the C-C bond formation, yielding selectively only one enantiomer of the product. Systematic study of a series of the catalyst-substrate combinations revealed that the experimentally observed sense of enantioselection was consistently explained by computational analysis. The tendency of increasing ee with the bulk of the coordinated arene in Ru complex is reproduced computationally by changes in the difference of either ZPPE-corrected energies or Gibbs free energies for S- and R-pathways.
手性氮磺酰化二茂铁 DPEN 配体负载双功能钌催化剂促进的 1,3-二羰基化合物与环烯酮的迈克尔加成反应的机理通过 NMR 和 DFT 计算分析进行了研究。手性酰胺 Ru 配合物 Ru(N-磺酰基二苯乙二胺)(η(6)-芳烃)1a-c 与丙二酸二甲酯 2 和β-酮酯 3 的化学计量反应的 NMR 研究表明,在较低温度下,质子化以立体选择性的方式进行,得到胺配合物。与丙二酸酯 2 的反应仅提供 C 键合的氨基 Ru 配合物 6a,c,而与β-酮酯 3 的反应则得到迅速相互转化的 C 和 O 键合配合物的平衡混合物。C 键合 Ru 配合物 6c 和 O 键合 Ru 配合物 9c 的结构通过单晶 X 射线分析确定。计算研究表明,对映选择性 C-C 键的形成通过螯合离子对的中间形成进行,该离子对通过 Ru 金属中心与烯酮分子配位,产生高度有序的 C-C 键形成环境,仅选择性地生成产物的一种对映异构体。对一系列催化剂-底物组合的系统研究表明,实验观察到的对映选择性趋势通过计算分析得到了一致的解释。在 Ru 配合物中,与配位芳烃的体积相关的 ee 值增加的趋势通过 ZPPE 校正能量或 S 和 R 途径的吉布斯自由能的差异的变化在计算上得到重现。