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Cascade reactions cyclizations

Keywords Sulfonamides, vinyl ketones, toluene, DBU, room temperature, Michael addition, cascade reaction, cyclization, functionalized 3-aroyl-4-hydroxy-4-arylpiperidines, stereoselectivity... [Pg.132]

Alkaloid syntheses by cascade cycloaddition/cyclization reactions of A-acyli-minium ion 98CC1417. [Pg.226]

A very impressive multiple cationic domino reaction was used in the enan-tioselective total synthesis of (-)-gilbertine (1-190), described by Blechert and coworkers [50]. When the tertiary alcohol 1-184 is treated with TFA, a carbocation is formed which undergoes a cascade of cyclizations to afford 1-190 in very good yield (61 %) (Scheme 1.44). The cations 1-185 to 1-189 can be assumed as intermediates. [Pg.39]

Et3B-induced radical cascade reactions with 1,5-enynes and 1,5-diynes have been applied to the synthesis of dioxatriquinanes and tricyclic glucocon-jugates (Scheme 17) [44,45]. Some of these elegant cascade cyclizations were also performed under mild conditions at - 50 °C. [Pg.90]

It is worth mentioning that some precursors easily catalyze the reductive carbonylation of alkynes from the C0/H20 couple. Here, the main role of water is to furnish hydrogen through the water-gas-shift reaction, as evidenced by the co-production of CO2. In the presence of Pd /KI terminal alkynes have been selectively converted into furan-2-(5H)-ones or anhydrides when a high concentration in CO2 is maintained. Two CO building blocks are incorporated and the cascade reactions that occur on palladium result in a cyclization together with the formation of an oxygen-carbon bond [37,38]. Two examples are shown in Scheme 4. [Pg.110]

Balme G, Bouyssi D, Monteiro N (2006) The Virtue of Michael-Type Addition Processes in the Design of Transition Metal-Promoted Cyclizative Cascade Reactions. 19 115-148 Barluenga J, Rodriguez F, Fanands FJ, Fldrez J (2004) Cycloaddition Reaction of Group 6 Fischer Carbene Complexes. 23 59-121 Basset J-M, see Candy J-P (2005) 16 151-210... [Pg.193]

Cascade Addition-Cyclization Reactions Given the importance of cascade reactions in modem chemical synthesis, the MacMillan group has proposed expansion of the realm of iminium catalysis to include the activation of tandem bond-forming processes, with a view toward the rapid constraction of natural products. In this context, the addition-cyclization of tryptamines with a,p-unsaturated aldehydes in the presence of imidazolidinone catalysts 11 or 15 has been accomplished to provide pyrroloindoline adducts in high yields and with excellent enantioselectivities (Scheme 11.3a). This transformation is successful... [Pg.322]

In 2007, Terada et al. extended their previously described chiral phosphoric acid-catalyzed aza-ene-type reaction of M-acyl aldimines with disubstituted enecarbamates (Scheme 28) to a tandem aza-ene-type reaction/cyclization cascade as a one-pot entry to enantioenriched piperidines 121 (Scheme 48). The sequential process was rendered possible by using monosubstituted 122 instead of a disubstituted enecarbamate 76 to produce a reactive aldimine intermediate 123, which is prone to undergo a further aza-ene-type reaction with a second enecarbamate equivalent. Subsequent intramolecular cychzation of intermediate 124 terminates the sequence. The optimal chiral BINOL phosphate (R)-3h (2-5 mol%, R = 4-Ph-C H ) provided the 2,4,6-sub-stituted M-Boc-protected piperidines 121 in good to exceUent yields (68 to > 99%) and accomplished the formation of three stereogenic centers with high diastereo- and exceUent enantiocontrol (7.3 1 to 19 1 transicis, 97 to > 99% ee(trans)) [72]. [Pg.433]

Scheme 48 Tandem aza-ene-type reaction/cyclization cascade scope and reaction intermediates... Scheme 48 Tandem aza-ene-type reaction/cyclization cascade scope and reaction intermediates...
Yttrium-catalyzed cascade cyclization/hydrosilylation was also applied to 3-substituted 4-vinyl-1,6-hexadienes. For example, reaction of 5y/7-3-(/ r/-butyldimethylsiloxy)-4-ethenyl-l,6-heptadiene syn-l ) with phenylsilane catalyzed by Gp 2YMe(THF) gave 72a in 72% yield as a 2.1 1 mixture of diastereomers (Equation (47)). Yttrium-catalyzed cascade reaction of the corresponding diastereomer anti-1 was more effective and gave 72b in 78% yield as a 7.2 1... [Pg.395]

This chapter covers the recent advances in amidocarbonylations, cyclohydrocarbonylations, aminocarbonylations, cascade carbonylative cyclizations, carbonylative ring-expansion reactions, thiocarbonylations, and related reactions from 1993 to early 2005. In addition, technical development in carbonylation processes with the use of microwave irradiation as well as new reaction media such as supercritical carbon dioxide and ionic liquids are also discussed. These carbonylation reactions provide efficient and powerful methods for the syntheses of a variety of carbonyl compounds, amino acids, heterocycles, and carbocycles. [Pg.512]

Cyclohydrocarbonylation of 1-allylpyrroles 74a-d catalyzed by Rh4(CO)i2 gave the corresponding 5,6-dihydro-indolizines 77a-d in good yield and excellent regioselectivity (Scheme 12)." This reaction proceeded through a cascade hydroformylation-cyclization-dehydration sequence (Scheme 12). Exclusive introduction of a formyl group... [Pg.520]

In this chapter, the recent advances in amidocarbonylations, cyclohydrocarbonylations, aminocarbonylations, cascade carbonylative cyclizations, carbonylative ring-expansion reactions, thiocarbonylations, and related reactions are reviewed and the scope and mechanisms of these reactions are discussed. It is clear that these carbonylation reactions play important roles in synthetic organic chemistry as well as organometallic chemistry. Some of the reactions have already been used in industrial processes and many others have high potential to become commercial processes in the future. The use of microwave irradiation and substitutes of carbon monoxide has made carbonylation processes suitable for combinatorial chemistry and laboratory syntheses without using carbon monoxide gas. The use of non-conventional reaction media such as SCCO2 and ionic liquids makes product separation and catalyst recovery/reuse easier. Thus, these processes can be operated in an environmentally friendly manner. Judging from the innovative developments in various carbonylations in the last decade, it is easy to anticipate that newer and creative advances will be made in the next decade in carbonylation reactions and processes. [Pg.552]

For the synthesis of furanones, Kirsch et al. studied the gold-catalyzed hetero-cyclization/1,2-migration cascade reaction of a-hydroxy propargyl ketones [139]. [Pg.465]

Keywords ninhydrin, dimedone, aminocrotonate,, cyclization, cascade reaction, waste-free, solid-solid reaction... [Pg.92]

Keywords /V-arylmcthylcniminc, cascade reaction, solid-solid reaction, gas-solid reaction, aminomethylation, cyclization, Troeger base... [Pg.225]

Keywords o-phenylendiamine, parabanic acid, cyclization, cascade reaction, melt reaction, quinoxaline... [Pg.233]

Oxidatively generated oxocarbenium ions have been used for intramolecular epoxide activation. Cascade reactions to form oligotetrahydrofuran products that demonstrated a strong preference for the exo-cyclization pathway were achieved in good yields when disubstituted epoxides were used as substrates. High stereoselectivity was observed in these reactions, with complementary diastereomers being formed from diastereomeric (g) epoxides.257... [Pg.114]

Nitroquinoline 209 enters into a direct cyclocondensation with aromatic hydra-zones in NaOH/DMF giving pyrazolo[3,4-/]quinolines 210 and (or) triazino[6,5-/ quinolines 211 in low to moderate yield (Scheme 62) (OOOL413). Their ratio mainly depends on the structure of the starting hydrazone. For example, electron-donating substituents in its aryl moiety assist triazine ring closure. Evidently, pyrazoles 210 are products of two consecutive SNH and SN ipso reactions, whereas conversion of 209 into 211 looks rather complicated and better corresponds with cascade hetero-cyclizations considered in Section III.D.l. [Pg.89]

Formation of five-membered heterocycles through radical methodologies has been investigated extensively. Inter-, intramolecular, and cascade reactions have been reported for the synthesis of heterocycles. In the case of intramolecular cyclizations, 5-exo pathway is the preferred mode of reactivity. Rate constant for the formation of pyrrolidine by radical ring closure has been reported [95AJC2047],... [Pg.16]

A radical cyclization controlled by sulfur yields the tetrahydroisoquinoline (Equation 49) <1997J(P1)2291>. In the absence of the sulfur groups, only the reduced product is isolated. Further reactions that utilize radical cyclizations with vinylsulfides show a cascade reaction eventually forming the benzo[ ]quinolizine system <1999TL1149> (Equation 50). [Pg.233]

In more sophisticated approaches, [3,3]-sigmatropic rearrangements have been incorporated in cascade reactions in which each step could be catalyzed by silver salts. Usually, the silver promoted [3,3]-sigmatropic shift is combined with a silver-catalyzed cyclization,68 as outlined in the general scheme below for alkynyl compounds (Scheme 3.44). [Pg.102]


See other pages where Cascade reactions cyclizations is mentioned: [Pg.89]    [Pg.313]    [Pg.8]    [Pg.563]    [Pg.564]    [Pg.720]    [Pg.1123]    [Pg.159]    [Pg.1214]    [Pg.38]    [Pg.195]    [Pg.102]    [Pg.331]    [Pg.342]    [Pg.344]    [Pg.365]    [Pg.104]    [Pg.106]   
See also in sourсe #XX -- [ Pg.743 , Pg.744 ]




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Cascade addition-cyclization reaction

Cascade cyclizations

Cascade reactions

Cascade reactions cascades

Cascade reactions transannular cyclization

Cyclization reactions

Cyclization, cascade reaction

Cyclization, cascade reaction

Palladium-catalyzed cascade cyclization reaction

Rearrangement reactions cyclization cascade

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