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Coupling reactions propargylic

The unsaturated c.vo-enol lactone 17 is obtained by the coupling of propargylic acetate with 4-pentynoic acid in the presence of KBr using tri(2-furyl)-phosphine (TFP) as a ligand. The reaction is explained by the oxypalladation of the triple bond of 4-pentynoic acid with the ailenyipailadium and the carbox-ylate as shown by 16, followed by reductive elimination to afford the lactone 17. The ( -alkene bond is formed because the oxypalladation is tnins addition[8]. [Pg.455]

Copper(I) halide-catalyzed coupling reactions of perfluoro Gngnard reagents with allyl and propargyl halides have been reported [256], The acetylenic copper compound may be an intermediate in these reactions. [Pg.713]

Whereas triethyl (l-methyl-2-yl)indolyl borate (119) undergoes Pd-catalyzed coupling with propargyl carbonates in an 8 2 manner yielding 2-allenylindoles <96H(43)1591>, conducting this reaction in the presence of CO (10 atm) affords cyclopenta[fe]indoles 120 <96CC2409>. [Pg.111]

Palladium And/Or Copper-Mediated Cross-Coupling Reactions Between 1-Alkynes And Vinyl, Aryl, 1-Alkynyl, 1,2-Propadienyl, Propargyl And Allylic Halides Or Related Compounds. A Review, Rossi. R. Carpita, A. Beilina, F. Org. Prep. Proceed. Int., 1995, 27, 129... [Pg.22]

Eventually, indole acetic acid 2 was prepared from iodoaniline 28 and propargyl alcohol derivative 61 via the newly developed coupling reaction followed by a cyanide displacement-hydrolysis sequence, as shown in Scheme 4.16. [Pg.131]

Another example of the addition of terminal alkynes to C=N in water is the coupling of alkynes with in-situ-generated A-acylimines (Eq. 4.32) and A-acyliminium ions (Eq. 4.33). In 2002, Li et al. developed a coupling reaction of alkynes with A-acylimines and A-acyliminium ions mediated by Cu(I) in water to generate propargyl amide derivatives.57 Either an activated imine derivative or imininum derivative was proposed as the intermediate, respectively. [Pg.115]

Reaction with Propargyl Halides. The indium-mediated coupling of propargyl bromide with a variety of imines and imine oxides afforded homo-propargylamine derivatives in aqueous media under mild conditions.78 Propargylation of glyoxylic oxime ether in the presence of a catalytic amount of palladium(O) complex and indium(I) iodide in aqueous media was also studied (Eq.11.47).79... [Pg.357]

Denmark pursued intramolecular alkyne hydrosilylation in the context of generating stereodefined vinylsilanes for cross-coupling chemistry (Scheme 21). Cyclic siloxanes from platinum-catalyzed hydrosilylation were used in a coupling reaction, affording good yields with a variety of aryl iodides.84 The three steps are mutually compatible and can be carried out as a one-pot hydro-arylation of propargylic alcohols. The isomeric trans-exo-dig addition was also achieved. Despite the fact that many catalysts for terminal alkyne hydrosilylation react poorly with internal alkynes, the group found that ruthenium(n) chloride arene complexes—which provide complete selectivity for trans-... [Pg.806]

In the Pd-catalyzed cross-coupling reactions of acylzirconocene chlorides with allylic halides and/or acetates (Section 5.4.4.4), the isolation of the expected p,y-unsaturated ketone is hampered by the formation of the a, P-un saturated ketone, which arises from isomerization of the p,y-double bond. This undesirable formation of the unsaturated ketone can be avoided by the use of a Cu(I) catalyst instead of a Pd catalyst [35], Most Cu(I) salts, with the exception of CuBr - SMe2, can be used as efficient catalysts Thus the reactions of acylzirconocene chlorides with allyl compounds (Table 5 8 and Scheme 5 30) or propargyl halides (Table 5.9) in the presence of a catalytic amount (10 mol%) of Cu(I) in DMF or THF are completed within 1 h at 0°C to give ffie acyl--allyl or acyl-allenyl coupled products, respectively, in good yields. ill... [Pg.170]

Palladium-Catalyzed Coupling Reactions of Propargyl Electrophiles with Hard Carbon Nucleophiles... [Pg.96]

As shown in the previous sections, a (cr-allenyl)palladium species, which is formed from a propargyl electrophile and a Pd(0) catalyst, reacts with a hard carbon nucleophile in a manner analogous to the Pd-catalyzed cross-coupling reaction to give a substituted allene. The results indicate that the reactivity of the (cj-allenyl)palladium species is similar to that of an alkenylpalladium intermediate. Indeed, it was found that the (cr-allenyl)palladium species reacted with olefins to give vinylallenes, a reaction process that is similar to that of the Heck reaction of alkenyl halides [54]. [Pg.102]

The Pd-catalyzed coupling reaction of the propargyl acetate 53 and 4-pentynoic acid (54) in the presence of potassium bromide produced the unsaturated exo-enol lactone 55 [66], The reaction proceeded via oxypalladation of the triple bond of 54 with an allenylpalladium intermediate, which was formed from Pd(0) and 53 and the carboxylate as shown in Scheme 3.30. [Pg.106]

Many of the modern vinylallene syntheses involve metal-mediated coupling reactions, as shown by several typical examples summarized in Scheme 5.11. The treatment of the propargyl carbonate 83 with the alkenylborane 84 in the presence of a palladium catalyst furnished the substituted vinylallene 85 in excellent yield (Scheme 5.11) [28],... [Pg.195]

Later, a similar coupling reaction between allyl bromide or cinnamyl bromide with Ar3Bi was reported to provide the coupling products in good yields when the bromides were used in excess (Scheme 50) [65]. Under the same reaction conditions, arylation of propargyl bromide also proceeded to provide arylated allenes in moderate yields (Scheme 51) [65]. [Pg.223]

Scheme 51 Cross-coupling reaction of Ar3Bi with propargyl bromide... Scheme 51 Cross-coupling reaction of Ar3Bi with propargyl bromide...
Scheme 7.32 Reductive coupling reactions of propargylic alcohols. Scheme 7.32 Reductive coupling reactions of propargylic alcohols.
This side-reaction is most serious in the case of acetylenes RC=CH with a relatively low acidity aliphatic 1-alkynes, e.g. 1-octyne, and acetylenic alcohols HCaC(CH2)nOH with n > 2, give reduced yields (40-50%) in the coupling reaction. In many other reactions, yields are high. Since the bromoalkyne usually has the highest "added value", economical considerations prescribe the use of an excess of the free acetylene, especially when it is inexpensive, e.g. propargyl alcohol. The mechanism of the Cadiot-Chodkiewicz reaction has not been studied in detail, but is seems likely that a copper acetylide ROCCu is formed first it often appears as a yellowish suspension. [Pg.212]

Reaction of Zinc-Copper Couple with Propargyl Halides to Give Allenes... [Pg.18]

In Table 1 containing 72 (= 9 x 8) classes of cross-coupling reactions, 42 of them, nearly 60% of the total, involve the use of at least one allyl, benzyl or propargyl (or allenyl) reagent as a cross-coupling partner. They can be divided into five categories corresponding to the five blocks in Table 1, as shown below. [Pg.516]


See other pages where Coupling reactions propargylic is mentioned: [Pg.208]    [Pg.208]    [Pg.98]    [Pg.52]    [Pg.195]    [Pg.195]    [Pg.218]    [Pg.673]    [Pg.129]    [Pg.565]    [Pg.78]    [Pg.96]    [Pg.148]    [Pg.199]    [Pg.98]    [Pg.100]    [Pg.149]    [Pg.98]    [Pg.100]    [Pg.91]    [Pg.239]    [Pg.243]    [Pg.181]    [Pg.223]    [Pg.127]    [Pg.132]    [Pg.135]    [Pg.504]    [Pg.520]    [Pg.521]    [Pg.522]   
See also in sourсe #XX -- [ Pg.107 ]




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Cross-coupling reactions propargylation

Propargyl coupling

Propargyl halides, cross-coupling reactions

Propargyl-cobalt coupling reactions

Propargylation reactions

Propargylic coupling

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