4.6 Article

Catalytic Asymmetric Hydrogenation of 3-Substituted Benzisoxazoles

Journal

MOLECULES
Volume 17, Issue 6, Pages 6901-6915

Publisher

MDPI
DOI: 10.3390/molecules17066901

Keywords

ruthenium; catalytic asymmetric synthesis; hydrogenation; benzisoxazole; amine

Funding

  1. Global COE Program, Science for Future Molecular Systems from MEXT
  2. Grants-in-Aid for Scientific Research [24106732] Funding Source: KAKEN

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A variety of 3-substituted benzisoxazoles were reduced with hydrogen using the chiral ruthenium catalyst, {RuCl(p-cymene)[(R,R)-(S,S)-PhTRAP]}Cl. The ruthenium-catalyzed hydrogenation proceeded in high yield in the presence of an acylating agent, affording alpha-substituted o-hydroxybenzylamines with up to 57% ee. In the catalytic transformation, the N-O bond of the benzisoxazole substrate is reductively cleaved by the ruthenium complex under the hydrogenation conditions. The C-N double bond of the resulting imine is saturated stereoselectively through the PhTRAP-ruthenium catalysis. The hydrogenation produces chiral primary amines, which may work as catalytic poisons, however, the amino group of the hydrogenation product is rapidly acylated when the reaction is conducted in the presence of an appropriate acylating agent, such as Boc(2)O or Cbz-OSu.

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