TY - JOUR
T1 - Ruthenium(II)/chiral Brønsted acid co-catalyzed enantioselective four-component reaction/cascade aza-michael addition for efficient construction of 1,3,4-tetrasubstituted tetrahydroisoquinolines
AU - Jiang, Jun
AU - Ma, Xiaochu
AU - Ji, Changge
AU - Guo, Zhenqiu
AU - Shi, Taoda
AU - Liu, Shunying
AU - Hu, Wenhao
PY - 2014/2/3
Y1 - 2014/2/3
N2 - An elegant synergistic catalytic system comprising a ruthenium complex with a chiral Brønsted acid was developed for a four-component Mannich/cascade aza-Michael reaction. The ruthenium-associated ammonium ylides successfully trapped with in situ generated imines indicates a stepwise process of proton transfer in the ruthenium-catalyzed carbenoid NH insertion reaction. The different decomposition abilities of various ruthenium complexes towards diazo compounds were well explained by the calculated thermodynamic data. The transformation features a mild, rapid, and efficient method for the synthesis of enantiomerically pure 1,3,4-tetrasubstituted tetrahydroquinolines bearing a quaternary stereogenic carbon center from simple starting precursors in moderate yields with high diastereo- and enantioselectivity. An elegant synergistic catalytic system comprising a ruthenium complex with a chiral Brønsted acid was developed for a four-component Mannich/cascade aza-Michael reaction. The transformation features a mild, rapid, and efficient method for the synthesis of enantiomerically pure 1,3,4-tetrasubstituted tetrahydroquinolines from simple starting precursors in moderate yields with high diastereo- and enantioselectivity (see scheme, Cbz=carbobenzyloxy).
AB - An elegant synergistic catalytic system comprising a ruthenium complex with a chiral Brønsted acid was developed for a four-component Mannich/cascade aza-Michael reaction. The ruthenium-associated ammonium ylides successfully trapped with in situ generated imines indicates a stepwise process of proton transfer in the ruthenium-catalyzed carbenoid NH insertion reaction. The different decomposition abilities of various ruthenium complexes towards diazo compounds were well explained by the calculated thermodynamic data. The transformation features a mild, rapid, and efficient method for the synthesis of enantiomerically pure 1,3,4-tetrasubstituted tetrahydroquinolines bearing a quaternary stereogenic carbon center from simple starting precursors in moderate yields with high diastereo- and enantioselectivity. An elegant synergistic catalytic system comprising a ruthenium complex with a chiral Brønsted acid was developed for a four-component Mannich/cascade aza-Michael reaction. The transformation features a mild, rapid, and efficient method for the synthesis of enantiomerically pure 1,3,4-tetrasubstituted tetrahydroquinolines from simple starting precursors in moderate yields with high diastereo- and enantioselectivity (see scheme, Cbz=carbobenzyloxy).
KW - Brønsted acid
KW - multicomponent reactions
KW - ruthenium
KW - synergistic catalysis
KW - tetrahydroisoquinolines
UR - https://www.scopus.com/pages/publications/84895063522
U2 - 10.1002/chem.201304576
DO - 10.1002/chem.201304576
M3 - 文章
C2 - 24436086
AN - SCOPUS:84895063522
SN - 0947-6539
VL - 20
SP - 1505
EP - 1509
JO - Chemistry - A European Journal
JF - Chemistry - A European Journal
IS - 6
ER -