Mechanistic Investigations into the Enantioselective Conia-Ene Reaction Catalyzed by Cinchona-Derived Amino Urea Pre-Catalysts and CuI

被引:29
作者
Sladojevich, Filippo [1 ]
Fuentes de Arriba, Angel L. [2 ]
Ortin, Irene [1 ]
Yang, Ting [3 ]
Ferrali, Alessandro [4 ]
Paton, Robert S. [1 ]
Dixon, Darren J. [1 ]
机构
[1] Univ Oxford, Dept Chem, Chem Res Lab, Oxford OX1 3TA, England
[2] Univ Salamanca, Dept Organ Chem, E-37008 Salamanca, Spain
[3] GlaxoSmithKline China R&D, Shanghai 201203, Peoples R China
[4] Enantia SL, Barcelona 1008028, Spain
基金
英国工程与自然科学研究理事会;
关键词
asymmetric catalysis; cinchona alkaloids; Conia-ene reaction; quantum mechanical calculations; reaction mechanism; COOPERATIVE CATALYSIS; 1,3-DICARBONYL COMPOUNDS; ASYMMETRIC CATALYSIS; NONCOVALENT INTERACTIONS; BOND ACTIVATION; M06; SUITE; EFFICIENT; ENERGIES; METAL; ACID;
D O I
10.1002/chem.201200832
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The enantioselective Conia-ene cyclization of alkyne-tethered -ketoesters is efficiently catalyzed by the combination of cinchona-derived amino-urea pre-catalysts and copper(I) salts. The reaction scope is broad and a series of substrates can be efficiently cyclized with high yields and enantioselectivities. Herein, we present a detailed mechanistic study based on experimental considerations and quantum mechanical calculations. Several variables, such as the nature of the organic pre-catalyst and the metal-ion source, have been thoroughly investigated. Kinetic studies, as well as kinetic isotope effects and deuterium labeling experiments have been used to gain further insights into the mechanism and prove the cooperative nature of the catalytic system. Our studies suggest that the rate-limiting step for the reaction involves the -ketoester deprotonation and that the active species responsible for the enantiodeterming step is monomeric in amino-urea pre-catalyst. Computational studies provide a quantitative understanding of the observed stereoinduction and identify hydrogen bonding from the urea group as a crucial factor in determining the observed enantioselectivity.
引用
收藏
页码:14286 / 14295
页数:10
相关论文
共 84 条
  • [31] Girard C., 1998, ANGEW CHEM, V110, P3088
  • [32] Glendening E. D., NBO VERSION 3 1, Patent No. [NBO3.1, 31]
  • [33] Grondal C, 2010, NAT CHEM, V2, P167, DOI [10.1038/NCHEM.539, 10.1038/nchem.539]
  • [34] Cooperative multimetallic catalysis using metallosalens
    Haak, Robert M.
    Wezenberg, Sander J.
    Kleij, Arjan W.
    [J]. CHEMICAL COMMUNICATIONS, 2010, 46 (16) : 2713 - 2723
  • [35] Indium-catalyzed Conia-ene reaction for alkaloid synthesis
    Hatakeyama, Susumi
    [J]. PURE AND APPLIED CHEMISTRY, 2009, 81 (02) : 217 - 226
  • [36] HAY PJ, 1985, J CHEM PHYS, V82, P299, DOI [10.1063/1.448800, 10.1063/1.448799]
  • [37] A Zinc(II) Catalyst System for the Conia-Ene Reaction of Alkynyl-Aminomalonates Applicable to 5-Endo-Dig Reactions
    Hess, Wilfried
    Burton, Jonathan W.
    [J]. ADVANCED SYNTHESIS & CATALYSIS, 2011, 353 (16) : 2966 - 2970
  • [38] THE 3(10) HELICAL CONFORMATION OF THE AMINO TERMINAL DECAPEPTIDE OF SUZUKACILLIN - 270 MHZ H-1-NMR EVIDENCE FOR 8 INTRAMOLECULAR HYDROGEN-BONDS
    IQBAL, M
    BALARAM, P
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1981, 103 (18) : 5548 - 5552
  • [39] Efficient Formation of Ring Structures Utilizing Multisite Activation by Indium Catalysis
    Itoh, Yoshimitsu
    Tsuji, Hayato
    Yamagata, Ken-ichi
    Endo, Kohei
    Tanaka, Iku
    Nakamura, Masaharu
    Nakamura, Eiichi
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2008, 130 (50) : 17161 - 17167
  • [40] CHARACTERIZATION OF THE CHIRAL TITANIUM REAGENT PREPARED FROM THE TARTRATE-DERIVED CHIRAL DIOL AND TITANIUM DICHLORIDE DIISOPROPOXIDE
    IWASAWA, N
    HAYASHI, Y
    SAKURAI, H
    NARASAKA, K
    [J]. CHEMISTRY LETTERS, 1989, (09) : 1581 - 1584