TY - JOUR
T1 - Enantioselective borohydride reduction catalyzed by cobalt complexes
T2 - Discovery, analysis, and design for a halogen-free system
AU - Yamada, Tohru
PY - 2008/5/19
Y1 - 2008/5/19
N2 - On the basis of a study on the enantioselective version of the oxidation-reduction hydration catalyzed by bis(1,3-diketonato)cobalt complexes, the highly enantioselective borohydride reduction of carbonyl compounds was developed in the presence of a catalytic amount of an optically active cobalt(II) complex catalyst. The experimental and theoretical studies on the mechanistic insight of this reaction revealed that the key reactive intermediate of borohydride reduction catalyzed by ketoiminatocobalt(II) complexes would be the dichloromethyl-cobalt hydride with a sodium cation, which was generated from chloroform and sodium borohydride. The theoretical simulation of various axial groups in active cobalt complex catalysts predicted that the cobalt-carbene complexes could be employed as efficient catalysts. The newly designed complexes generated from cobalt complex and methyl diazoacetate made it possible to catalyze the enantioselective borohydride reduction in a completely halogen-free solvent.
AB - On the basis of a study on the enantioselective version of the oxidation-reduction hydration catalyzed by bis(1,3-diketonato)cobalt complexes, the highly enantioselective borohydride reduction of carbonyl compounds was developed in the presence of a catalytic amount of an optically active cobalt(II) complex catalyst. The experimental and theoretical studies on the mechanistic insight of this reaction revealed that the key reactive intermediate of borohydride reduction catalyzed by ketoiminatocobalt(II) complexes would be the dichloromethyl-cobalt hydride with a sodium cation, which was generated from chloroform and sodium borohydride. The theoretical simulation of various axial groups in active cobalt complex catalysts predicted that the cobalt-carbene complexes could be employed as efficient catalysts. The newly designed complexes generated from cobalt complex and methyl diazoacetate made it possible to catalyze the enantioselective borohydride reduction in a completely halogen-free solvent.
KW - Aerobic oxidation
KW - Asymmetric catalysts
KW - Carbene complex
KW - Cobalt complex
KW - DFT method
KW - Enantioselective reduction
KW - Halogen-free solvent
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U2 - 10.1055/s-2008-1067036
DO - 10.1055/s-2008-1067036
M3 - Review article
AN - SCOPUS:44949237920
SN - 0039-7881
SP - 1628
EP - 1640
JO - Synthesis
JF - Synthesis
IS - 10
M1 - E21008SS
ER -