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BHA Ligands for the Synthesis of Optically Active Epoxyalcohols
(1R,2R)-N,N'-Dihydroxy-N,N'-bis(diphenylacetyl)cyclohexane-1,2-diamine (1) and (1S,2S)-N,N'-dihydroxy-N,N'-bis(diphenylacetyl)cyclohexane-1,2-diamine (2), which are called BHA ligands, are utilized in asymmetric epoxidation reactions. When an allyl alcohol is treated with a catalytic amount of vanadium-BHA complex and tert-butyl hydroperoxide (= TBHP), an epoxyalcohol is given in high yield and high enantioselectivity.1) This reaction proceeds even in the presence of water and that is an advantage compared with Sharpless-Katsuki asymmetric epoxidation, which requires strict dehydrated condition. In addition, the epoxidation proceeds in high enantioselectivities by using zirconium or hafnium as a metal species when homo- and bishomoallyl alcohols are applied.2) As a result, BHA ligands are anticipated as a powerful tool of asymmetric synthesis and some researches of total syntheses of natural products using 1 or 2 have been already reported.3,4)
Related Products
- D3715
- (1R,2R)-N,N'-Dihydroxy-N,N'-bis(diphenylacetyl)cyclohexane-1,2-diamine
- D3716
- (1S,2S)-N,N'-Dihydroxy-N,N'-bis(diphenylacetyl)cyclohexane-1,2-diamine
- B3153
- tert-Butyl Hydroperoxide (= TBHP)
References
- 1) Enantioselective Epoxidation of Allylic Alcohols by a Chiral Complex of Vanadium: An Effective Controller System and a Rational Mechanistic Model
- 2) Zirconium(IV)- and Hafnium(IV)-Catalyzed Highly Enantioselective Epoxidation of Homoallylic and Bishomoallylic Alcohols
- 3) Total Synthesis of (−)-Ophiodilactone A and (−)-Ophiodilactone B
- 4) An enantiocontrolled entry to the tricyclic polar segment of (+)-fusarisetin A