TY - JOUR
T1 - A practical large-scale synthesis of enantiomerically pure 3-[bis(methoxycarbonyl)methyl]cyclohexanone via catalytic asymmetric Michael reaction
AU - Xu, Youjun
AU - Ohori, Ken
AU - Ohshima, Takashi
AU - Shibasaki, Masakatsu
N1 - Funding Information:
This work was supported by CREST, The Japan Science and Technology Corporation (JST), RFTF of Japan Society for the Promotion of Science, a Grant-in-Aid for Scientific Research on Priority Areas (A) ‘Exploitation of Multi-Element Cyclic Molecules’ from the Ministry of Education, Culture, Sports, Science and Technology, Japan, Grant-in-Aid from the Tokyo Biochemical Research Foundation, and fellowship from Heiwa Nakajima Foundation (to Y. X.).
PY - 2002/3/25
Y1 - 2002/3/25
N2 - A highly practical and efficient procedure for the large-scale (up to 6 mol) synthesis of enantiomerically pure (R)-3-[bis(methoxycarbonyl)methyl]cyclohexanone using an (R)-AlLibis(binaphthoxide) complex ((R)-ALB)-catalyzed asymmetric Michael reaction was developed. The reaction was successfully accelerated under highly concentrated conditions without lowering chemical yield or the high enantiomeric excess. Under these conditions, only 0.05 mol% of the catalyst forced the reaction to completion in 48 h. The work-up procedure was also improved and the enantiomerically pure compound was obtained as a white crystal in up to 95% yield without chromatographic separation. Finally, pre-manufacturing scale synthesis was performed. Using 0.1 mol% of the catalyst with 0.09 mol% of KO-t-Bu and MS 4 Å, the Michael reaction of 2-cyclohexenone (6.0 mol, 581 mL) with dimethyl malonate (6.0 mol, 686 mL) was completed in 24 h at ambient temperature to afford more than a kilogram of the enantiomerically pure product in 91% yield after three successive crystallizations. The described method renders the enantiomerically pure Michael adduct readily available on greater than kilo scale.
AB - A highly practical and efficient procedure for the large-scale (up to 6 mol) synthesis of enantiomerically pure (R)-3-[bis(methoxycarbonyl)methyl]cyclohexanone using an (R)-AlLibis(binaphthoxide) complex ((R)-ALB)-catalyzed asymmetric Michael reaction was developed. The reaction was successfully accelerated under highly concentrated conditions without lowering chemical yield or the high enantiomeric excess. Under these conditions, only 0.05 mol% of the catalyst forced the reaction to completion in 48 h. The work-up procedure was also improved and the enantiomerically pure compound was obtained as a white crystal in up to 95% yield without chromatographic separation. Finally, pre-manufacturing scale synthesis was performed. Using 0.1 mol% of the catalyst with 0.09 mol% of KO-t-Bu and MS 4 Å, the Michael reaction of 2-cyclohexenone (6.0 mol, 581 mL) with dimethyl malonate (6.0 mol, 686 mL) was completed in 24 h at ambient temperature to afford more than a kilogram of the enantiomerically pure product in 91% yield after three successive crystallizations. The described method renders the enantiomerically pure Michael adduct readily available on greater than kilo scale.
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U2 - 10.1016/S0040-4020(02)00141-2
DO - 10.1016/S0040-4020(02)00141-2
M3 - Article
AN - SCOPUS:0037170949
SN - 0040-4020
VL - 58
SP - 2585
EP - 2588
JO - Tetrahedron
JF - Tetrahedron
IS - 13
ER -