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Construction of Polycyclic Fused Pyrrolidines with Three Contiguous Stereocenters via Michael Addition of Vinylmalononitriles to Nitrostyrenes Using l -Proline-Derived Thiourea
Manjunatha Vishwanath, Muthuraj Prakash, Poopathy Vinayagam,
Published in Georg Thieme Verlag
2016
Volume: 48
   
Issue: 16
Pages: 2671 - 2678
Abstract
The catalytic efficiency of a bifunctional chiral thiourea derived from l-proline was evaluated in the asymmetric direct vinylogous Michael reaction of α,α-dicyanoolefins to β-nitrostyrenes with an electron-releasing or electron-withdrawing substituent in various positions. The corresponding adducts were isolated in good yields, with excellent diastereo- (>99%) and enantioselectivity (up to 95%). The Michael adducts were further functionalized to achieve the synthesis of polycyclic fused pyrrolidines with three contiguous stereocenters in good enantioselectivities. © Georg Thieme Verlag Stuttgart, New York.
About the journal
JournalSynthesis (Germany)
PublisherGeorg Thieme Verlag
ISSN00397881
Open AccessYes
Concepts (45)
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    Addition reactions
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    Enantioselectivity
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    Thioureas
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    Asymmetric synthesis
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    Bi-functional
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    Michael additions
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    Organocatalysis
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    Pyrrolidines
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    Synthesis (chemical)
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    2 (2 NITRO PHENYLETHYL) 3,4 DIHYRONAPHTHALEN 1(2H) ONE
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    2 [2 (2 NITRO 1 PHENYLETHYL)CYCLOHEXYLIDENE]MALONONITRILE
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    2 [2 (NITRO 1 PHENYLETHYL) 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [2 [1 (2 BROMOPHENYL) 2 NITROETHYL] 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [2 [1 (2 CHLOROPHENYL) 2 NITROETHYL] 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [2 [1 (2 FLUOROPHENYL) 2 NITROETHYL] 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [2 [1 (3 CHLOROPHENYL) 2 NITROETHYL] 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [2 [1 (3 METHOXYPHENYL) 2 NITROETHYL] 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [2 [1 (4 BROMOPHENYL) 2 NITROETHYL] 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [2 [1 (4 CHLOROPHENYL) 2 NITROETHYL] 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [2 [1 (4 FLUOROPHENYL) 2 NITROETHYL] 3,4 DIHYDRONAPHTHALEN 1(2H) YLIDENE]MALONONITRILE
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    2 [3 (2 NITRO 1 PHENYLETHYL)CHROMAN 4 YLIDENE]MALONONITRILE
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    2 [3 (2 NITRO 1 PHENYLETHYL)THIOCHROMAN 4 YLIDENE]MALONONITRILE
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    2 [3 [1 (2 FLUOROPHENYL) 2 NITROETHYL]CHROMAN 4 YLIDENE] MALONONITRILE
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    2 [3 [1 (3 BROMOPHENYL) 2 NITROETHYL]CHROMAN 4 YLIDENE] MALONONITRILE
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    2 [3 [1 (3 CHLOROPHENYL) 2 NITROETHYL]CHROMAN 4 YLIDENE] MALONONITRILE
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    2 [3 [1 (4 BROMOPHENYL) 2 NITROETHYL]CHROMAN 4 YLIDENE] MALONONITRILE
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    2 [3 [1 (4 CHLOROPHENYL) 2 NITROETHYL]CHROMAN 4 YLIDENE] MALONONITRILE
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    2 [3 [1 (4 METHOXYPHENYL) 2 NITROETHYL]CHROMAN 4 YLIDENE] MALONONITRILE
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    2 [3 [1 (4 METHYLPHENYL) 2 NITROETHYL]CHROMAN 4 YLIDENE] MALONONITRILE
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    3 (2 NITRO 1 PHENYLETHYL)CHROMAN 4 ONE
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    3 PHENYL 1,2,3,3A,4,9B HEXAHYDROCHROMENO[4,3 B]PYROLE
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    3 PHENYL 2,3,3A,4,5,9B HEXAHYDRO 1H BENZO[G]INDOLE
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    Malononitrile
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    Nitroalkane
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    Nitrostyrene
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    Pyrrolidine derivative
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    Thiourea
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    Unclassified drug
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    Article
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    Catalytic efficiency
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    Diastereoisomer
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    Environmental temperature
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    High performance liquid chromatography
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    Michael addition
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    Stereoisomerism