Oxiranyl Anions and Aziridinyl Anions

Author:

Satoh Tsuyoshi1

Affiliation:

1. Faculty of Pharmaceutical Sciences, Science University of Tokyo, Ichigaya-funagawara-machi, Shinjuku-ku, Tokyo, 162, and Department of Chemistry, Faculty of Science, Science University of Tokyo, Kagurazaka, Shinjuku-ku, Tokyo 162, Japan

Publisher

American Chemical Society (ACS)

Subject

General Chemistry

Reference109 articles.

1. For epoxides:  (a) Rao, A. S.; Paknikar, S. K.; Kirtane, J. G.Tetrahedron1983,39, 2323. (b) Gorzynski-Smith, J.Synthesis1984, 629. (c) Lewars, E. G. InComprehensive HeterocyclicChemistry; Katritzky, A. R., Rees, C. W., Eds.; Pergamon Press:  Oxford, 1984; Vol. 7, p 95. (d) Wong. H. N. C.; Fok, C. C. M.; Wong, T.Heterocycles1987,26, 1345. For aziridines:  (e) Armarego, W. L. F.Stereochemistry of HeterocyclicCompounds; John Wiley and Sons:  New York, 1977; Part I. (f) Deyrup, J. A. InSmall RingHeterocycles; Hassner, A., Ed.; John Wiley and Sons:  New York, 1983; Part I. (g) Kametani, T.; Honda, T. InAdvances in HeterocyclicChemistry; Katritzky, A. R., Ed.; Academic Press:  Orlando, 1986; Vol. 39, p 181.

2. The first practical method for asymmetric epoxidation

3. Catalytic asymmetric epoxidation and kinetic resolution: modified procedures including in situ derivatization

4. Cyclic Polyolefins. XVIII. Rearrangement of Cycloöctatetraene Oxide to 1,3,5-Cycloöctatrien-7-one1

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