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Reductive Mannich reaction

Isayama described the coupling reaction of N-methylimine 157 and ethyl crotonate catalyzed by Co(acac)2 and mediated by PhSiH3 to produce Mannich product 158 in 82% with syn-selectivity (Scheme 41) [71]. The (i-laclam 159 was readily synthesized by heating 158. In 2002, Matsuda et al. reported cationic Rh complex [Rh(COD) P(OPh)3 2]OTf (1 mol%) as an active catalyst for the reductive Mannich reaction [72]. N-Tosylaldiminc 160 was coupled with methyl acrylate and Et2MeSiH (200 mol%) at 45 °C to give the b-amino ester 161 in 96% with moderate anti-selectivity 68%. [Pg.141]

Scheme 49 Organocatalytic asymmetric reductive Mannich reaction... Scheme 49 Organocatalytic asymmetric reductive Mannich reaction...
Many reactions of the acyl group of ketones of the selenophene series have been studied. Acyl selenophenes have been shown to be brominated, oxidized, and cyanoethylated, and to undergo the Kishner reduction, Mannich reactions, and Claisen condensations. [Pg.33]

Scheme 19 Catalytic asymmetric reductive Mannich reaction of ketimines. Scheme 19 Catalytic asymmetric reductive Mannich reaction of ketimines.
In addition, Ir-complexes of DIFLUORPHOS (81) have been used in the asymmetric hydrogenation of quinolines (07SL2743). Very recently, its Cu(I)-complex (as CuOAc-DIFLOURPHOS) was identified as the catalyst of choice for the asymmetric reductive Mannich reaction of ketimines (93a-c) with a broad substrate scope providing high enantio- and diastereoselectivities (Scheme 19, 08JA16146). [Pg.54]

Scheme 11.27 First catalytic, enantioselective reductive Mannich reaction of ketimine [45],... Scheme 11.27 First catalytic, enantioselective reductive Mannich reaction of ketimine [45],...
Scheme 2.7) [41], The same concept has also been applied to inteimolecular reactions such as a reductive Mannich reaction between enals and a-imino esters using Hantzsch esters as the hydrogen source [42], In this case, however, the electrophile (a-imino ester) is added after the reduction of the starting material is complete and both reaction medium and temperature are adjusted to optimize yield and diastereoselectivity in the Mannich step. [Pg.51]

The desired pyridylamine was obtained in 69 % overall yield by monomethylation of 2-(aminomethyl)pyridine following a literature procedure (Scheme 4.14). First amine 4.48 was converted into formamide 4.49, through reaction with the in situ prepared mixed anhydride of acetic acid and formic acid. Reduction of 4.49 with borane dimethyl sulfide complex produced diamine 4.50. This compound could be used successfully in the Mannich reaction with 4.39, affording crude 4.51 in 92 % yield (Scheme 4.15). Analogous to 4.44, 4.51 also coordinates to copper(II) in water, as indicated by a shift of the UV-absorption maximum from 296 nm to 308 nm. [Pg.116]

Purines, N-alkyl-N-phenyl-synthesis, 5, 576 Purines, alkylthio-hydrolysis, 5, 560 Mannich reaction, 5, 536 Michael addition reactions, 5, 536 Purines, S-alkylthio-hydrolysis, 5, 560 Purines, amino-alkylation, 5, 530, 551 IR spectra, 5, 518 reactions, 5, 551-553 with diazonium ions, 5, 538 reduction, 5, 541 UV spectra, 5, 517 Purines, N-amino-synthesis, 5, 595 Purines, aminohydroxy-hydrogenation, 5, 555 reactions, 5, 555 Purines, aminooxo-reactions, 5, 557 thiation, 5, 557 Purines, bromo-synthesis, 5, 557 Purines, chloro-synthesis, 5, 573 Purines, cyano-reactions, 5, 550 Purines, dialkoxy-rearrangement, 5, 558 Purines, diazoreactions, 5, 96 Purines, dioxo-alkylation, 5, 532 Purines, N-glycosyl-, 5, 536 Purines, halo-N-alkylation, 5, 529 hydrogenolysis, 5, 562 reactions, 5, 561-562, 564 with alkoxides, 5, 563 synthesis, 5, 556 Purines, hydrazino-reactions, 5, 553 Purines, hydroxyamino-reactions, 5, 556 Purines, 8-lithiotrimethylsilyl-nucleosides alkylation, 5, 537 Purines, N-methyl-magnetic circular dichroism, 5, 523 Purines, methylthio-bromination, 5, 559 Purines, nitro-reactions, 5, 550, 551 Purines, oxo-alkylation, 5, 532 amination, 5, 557 dipole moments, 5, 522 H NMR, 5, 512 pJfa, 5, 524 reactions, 5, 556-557 with diazonium ions, 5, 538 reduction, 5, 541 thiation, 5, 557 Purines, oxohydro-IR spectra, 5, 518 Purines, selenoxo-synthesis, 5, 597 Purines, thio-acylation, 5, 559 alkylation, 5, 559 Purines, thioxo-acetylation, 5, 559... [Pg.761]

Thus, reduction of the Mannich reaction product (65) from acetophenone leads to alcohol 66. Replacement of the hydroxyl group by chlorine (67) followed by displacement of halogen with the anion from o-cresol affords the ether 68. Removal of one of the methyl groups on nitrogen by means of the von Braun reaction or its modem equivalent (reaction with alkyl chloroformate followed by saponification) leads to racemic 69 which is then resolved with L-(+)-mandelic acid to give the levorotary antidepressant tomoxetine (69) [16]. [Pg.30]

Knoevenagel reaction Knorr p3rrrole synthesis. Kolbe-Schmitt reaction Leuckart reaction Mannich reaction Mccrwein-Ponndorf-Verley reduction Michael reaction Oppenauer oxidation... [Pg.9]

After the initial two reports of Rh- and Co-catalyzed reductive aldol couplings, further studies did not appear in the literature until the late 1990s. Beyond 1998, several stereoselective and enantioselective reductive aldol reactions were developed, which are catalyzed by a remarkably diverse range of metal complexes, including those based upon Pd, Cu, Ir, and In. In this chapter, transition metal-catalyzed aldol, Michael, and Mannich reactions that proceed via transition metal hydride-promoted conjugate reduction are reviewed. [Pg.116]

Nishiyama H, Shiomi T (2007) Reductive Aldol, Michael, and Mannich Reactions. 279 105-137... [Pg.263]

Primary amino methylene substituents were introduced by a sequence of cya-nodehalogenation and subsequent reduction of the resulting nitrile with borane dimethyl sulfide. To incorporate tertiary aminomethylene substituents into the 2-pyri-done framework, a microwave-assisted Mannich reaction using preformed iminium salts proved to be effective. [Pg.246]


See other pages where Reductive Mannich reaction is mentioned: [Pg.114]    [Pg.141]    [Pg.105]    [Pg.108]    [Pg.438]    [Pg.114]    [Pg.141]    [Pg.105]    [Pg.108]    [Pg.438]    [Pg.588]    [Pg.1191]    [Pg.579]    [Pg.894]    [Pg.84]    [Pg.350]    [Pg.32]    [Pg.109]    [Pg.1197]    [Pg.99]    [Pg.114]    [Pg.527]    [Pg.412]    [Pg.66]    [Pg.369]   
See also in sourсe #XX -- [ Pg.108 ]

See also in sourсe #XX -- [ Pg.51 ]




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