Ruthenium-catalyzed propargylic substitution reactions of propargylic alcohols with oxygen-, nitrogen-, and phosphorus-centered nucleophiles

被引:169
|
作者
Nishibayashi, Y [1 ]
Milton, MD
Inada, Y
Yoshikawa, M
Wakiji, I
Hidai, M
Uemura, S
机构
[1] Kyoto Univ, Grad Sch Engn, Dept Energy & Hydrocarbon Chem, Nishikyo Ku, Kyoto 6158510, Japan
[2] Univ Tokyo, Grad Sch Engn, Dept Chem & Biotechnol, Bunkyo Ku, Tokyo 1138656, Japan
[3] Tokyo Univ Sci, Fac Ind Sci & Technol, Dept Mat Sci & Technol, Chiba 2788510, Japan
关键词
alcohols; amines; nucleophilic substitution; propargylic alcohols; ruthenium;
D O I
10.1002/chem.200400833
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The scope and limitations of the ruthenium-catalyzed propargylic substitution reaction of propargylic alcohols with heteroatom-centered nucleophiles are presented. Oxygen-, nitrogen-, and phosphorus-centered nucleophiles such as alcohols, amines, amides, and phosphine oxide are available for this catalytic reaction. Only the thiolate-bridged diruthenium complexes can work as catalysts for this reaction. Results of some stoichiometric and catalytic reactions indicate that the catalytic propargylic substitution reaction proceeds via an allenylidene complex formed in situ, whereby the attack Of nucleophiles to the allenylidene C, atom is a key step. Investigation of the relative rate constants for the reaction of propargylic alcohols with several para-substituted anilines reveals that the attack of anilines on the allenylidene C-gamma atom is not involved in the rate-determining step and rather the acidity of conjugated anilines of an alkynyl complex, which is formed after the attack of aniline on the C. atom, is considered to be the most important factor to determine the rate of this catalytic reaction. The key point to promote this catalytic reaction by using the thiolate-bridged diruthenium complexes is considered to be the ease of the ligand exchange step between a vinylidene ligand on the diruthenium complexes and another propargylic alcohol in the catalytic cycle. The reason why only the thiolate-bridged diruthenium complexes promote the ligand exchange step more easily with respect to other monoruthenium complexes in this catalytic reaction should be that one Ru moiety, which is not involved in the allenylidene formation, works as an electron pool or a mobile ligand to another Ru site. The catalytic procedure presented here provides a versatile, direct, and one-step method for propargylic substitution of propargylic alcohols in contrast to the so far well-known stoichiometric and stepwise Nicholas reaction.
引用
收藏
页码:1433 / 1451
页数:19
相关论文
共 50 条
  • [21] Etherification reactions of propargylic alcohols catalyzed by a cationic ruthenium allenylidene complex
    Alkhaieeli, Doaa F.
    Baum, Kevin J.
    Rabus, Jordan M.
    Bauer, Eike B.
    CATALYSIS COMMUNICATIONS, 2014, 47 : 45 - 48
  • [22] Ruthenium-catalyzed processes: Multi-faceted reactivity of propargylic alcohols with bicyclic alkenes
    Villeneuve, Karine
    Tam, William
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2005, 230 : U3178 - U3179
  • [23] Ruthenium-catalyzed formation of aryl(diphenyl)phosphine reactions of propargylic diphenylphosphine oxide
    Onodera, G
    Matsumoto, H
    Milton, MD
    Nishibayashi, Y
    Uemura, S
    ORGANIC LETTERS, 2005, 7 (18) : 4029 - 4032
  • [24] Ruthenium-catalyzed enantioselective prolpargylation of aromatic compounds with propargylic alcohols via allenylidene intermediates
    Matsuzawa, Hiroshi
    Miyake, Yoshihiro
    Nishibayashi, Yoshiaki
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2007, 46 (34) : 6488 - 6491
  • [25] Ruthenium-catalyzed reductive coupling reaction of propargylic alcohols via hydroboration of allenylidene intermediates
    Onodera, G
    Nishibayashi, Y
    Uemura, S
    ORGANOMETALLICS, 2006, 25 (01) : 35 - 37
  • [26] Ruthenium-catalyzed isomerizations of allylic and propargylic alcohols in aqueous and organic media: Applications in synthesis
    Cadierno, Victorio
    Crochet, Pascale
    Gimeno, Jose
    SYNLETT, 2008, (08) : 1105 - 1124
  • [27] Ruthenium-Catalyzed [2+2] Cycloadditions between Norbornene and Propargylic Alcohols or Their Derivatives
    Tsui, Gavin C.
    Villeneuve, Karine
    Carlson, Emily
    Tam, William
    ORGANOMETALLICS, 2014, 33 (14) : 3847 - 3856
  • [28] Ruthenium-catalyzed 1,3-dipolar cycloaddition of trifluoromethylated propargylic alcohols with azides
    Zhang, Chun-Tao
    Zhang, Xingang
    Qing, Feng-Ling
    TETRAHEDRON LETTERS, 2008, 49 (24) : 3927 - 3930
  • [29] Computational Study of the Mechanism and Selectivity of Palladium-Catalyzed Propargylic Substitution with Phosphorus Nucleophiles
    Jimenez-Halla, J. Oscar C.
    Kalek, Marcin
    Stawinski, Jacek
    Himo, Fahmi
    CHEMISTRY-A EUROPEAN JOURNAL, 2012, 18 (39) : 12424 - 12436
  • [30] Ruthenium-Catalyzed Enantioselective [3+3] Cycloaddition of Propargylic Alcohols with 2-Naphthols
    Kanao, Keiichiro
    Miyake, Yoshihiro
    Nishibayashi, Yoshiaki
    ORGANOMETALLICS, 2010, 29 (09) : 2126 - 2131