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Alkynes alkynols

The procedure for chlorination, bromination, and iodination of acetylenes in alkaline hypohalite solution432 is applicable to alkynes, alkynols, and acetylenemonocarboxylic acids with at least one hydrogen on the C=C group. [Pg.159]

The reaction of perfluoroalkyl iodides with alkenes affords the perfluoro-alkylated alkyl iodides 931. Q.a-Difluoro-functionalized phosphonates are prepared by the addition of the iododifluoromethylphosphonate (932) at room temperature[778], A one-electron transfer-initiated radical mechanism has been proposed for the addition reaction. Addition to alkynes affords 1-perfluoro-alkyl-2-iodoalkenes (933)[779-781]. The fluorine-containing oxirane 934 is obtained by the reaction of allyl aicohol[782]. Under a CO atmosphere, the carbocarbonylation of the alkenol 935 and the alkynol 937 takes place with perfluoroalkyl iodides to give the fluorine-containing lactones 936 and 938[783]. [Pg.264]

Addition of a hydroxy group to alkynes to form enol ethers is possible with Pd(II). Enol ether formation and its hydrolysis mean the hydration of alkynes to ketones. The 5-hydroxyalkyne 249 was converted into the cyclic enol ether 250[124], Stereoselective enol ether formation was applied to the synthesis of prostacyclin[131]. Treatment of the 4-alkynol 251 with a stoichiometric amount of PdCl2, followed by hydrogenolysis with formic acid, gives the cyclic enol ether 253. Alkoxypalladation to give 252 is trans addition, because the Z E ratio of the alkene 253 was 33 1. [Pg.500]

Substituting the benzene ring with a double bond, Pd-catalyzed intramolecular alkoxylation of alkyne 122 also proceeded via an alkenyl palladium complex to form furan 123 instead of a benzofurans [99, 100]. In addition, 3-hydroxyalkylbenzo[fc]furans was prepared by Bishop et al via a Pd-catalyzed heteroannulation of silyl-protected alkynols with 2-iodophenol in a fashion akin to the Larock indole synthesis, [101]. [Pg.289]

Alkynes react with the bulky germanium hydride (MejSdjGeH to selectively yield (Z)-alkenes (Equation (105)).67 The hydrogermylation of alkynols or alkynes can be catalyzed by a rhodium complex (Equation (106), Table 18) and some of the intermediates were identified (Scheme 16).132 Similar rhodium species react with alkynes to yield alkenyl complexes,133 and other transition metal complexes have been employed as hydrogermylation catalysts including those containing palladium.134,135... [Pg.731]

Intramolecular alkoxycarbonylation of alkynols is parallel to what has been described for alkenols except that functionalization of the triplebond produces a double bond. No lactone formation is observed in the Pd(II)-catalyzed oxidative cyclization-carbonylation of alkynes. Instead [(methoxycarbonyl)methylene]tetrahydrofurans are selectively formed [134, 135]. Moreover, starting from an enynol, furan-2-acetic ester is obtained resulting from a final aromatization step [136]. [Pg.125]

Another focus of this chapter is the alkynol cycloisomerization mediated by Group 6 metal complexes. Experimental and theoretical studies showed that both exo- and endo- cycloisomerization are feasible. The cycloisomerization involves not only alkyne-to-vinylidene tautomerization but alo proton transfer steps. Therefore, the theoretical studies demonstrated that the solvent effect played a crucial role in determining the regioselectivity of cycloisomerization products. [2 + 2] cycloaddition of the metal vinylidene C=C bond in a ruthenium complex with the C=C bond of a vinyl group, together with the implication in metathesis reactions, was discussed. In addition, [2 + 2] cycloaddition of titanocene vinylidene with different unsaturated molecules was also briefly discussed. [Pg.153]

The cyclic enol ether 255 from the functionalized 3-alkynol 254 was converted into the furans 256 by the reaction of allyl chloride, and 257 by elimination of MeOH[132]. The alkynes 258 and 260, which have two hydroxy groups at suitable positions, are converted into the cyclic acetals 259 and 261. Carcogran and frontalin have been prepared by this reaction[124]. [Pg.538]

Acetylenic precursors employed in the syntheses of sugars may be divided into three groups (a) aldehydes (usually in the form of acetals), (b) alkyl alkynyl ethers, and (c) alkynols or alkynediols. Some of them are commercially available (for example, 2-butyne-l,4-diol), and others are prepared by Grignard-type reactions between 1-alkynylmag-nesium halides or lithium alkynes and suitable aldehydes, ketones, or epoxides. In this way, the synthesis of substrates having the desired number of carbon atoms, as well as the necessary functional groups, can be achieved. The next step consists in partial saturation of the triple bond to afford the desired cis- or trans-alkene. ct.s-Alkene systems... [Pg.3]

Intramolecular hydrosilylation of oj-dimethylsiloxyalkynes such as 114, readily derived from alkynol 113, provides a convenient method for the regioselective functionalization of internal alkynes in combination with the Tamao oxidation and other transformations. An example of such a process giving 117 via 115 and 116 is illustrated in Scheme 1487. [Pg.1725]

Alkyne-vinylcyclopropanes, metal-catalyzed [5+23-cycloadditions, 10, 605 Alkynides, with tungsten carbonyls, 5, 666 Alkynoic acids, stannylmetallation, 9, 374 Alkynoles, hydration-dehydration reactions, 6, 841... [Pg.48]

Allylmetallation of alkynes is a useful tool for the synthesis of 1,4-dienes. Various main group allylmetals, as well as allylic transition metals, have been utilized in such transformations. The reaction of allylindium reagents with terminal alkynols was first reported in 1992. The reaction proceeds in DMF giving 1,4-dienes, where the proximal... [Pg.693]

Alkynols complexed to cobalt can be oxidized to alkynals without decomplexation. Propargyl aldehydes are protected from polymerization upon complexation with Co2(CO)6. These aldehydes smoothly undergo Wittig-type reactions. Carbonyl-ene reactions have been demonstrated (Scheme 194). Complexation to cobalt protected the enyne in complex (132) from Michael-type reactions (Scheme 195). Alkenyl-substituted complexes undergo [3 + 2]cycloadditions with nitrile A-oxides (Scheme 196). [Pg.3261]


See other pages where Alkynes alkynols is mentioned: [Pg.289]    [Pg.289]    [Pg.473]    [Pg.200]    [Pg.1025]    [Pg.132]    [Pg.226]    [Pg.677]    [Pg.125]    [Pg.253]    [Pg.17]    [Pg.163]    [Pg.19]    [Pg.91]    [Pg.169]    [Pg.524]    [Pg.31]    [Pg.32]    [Pg.109]    [Pg.207]    [Pg.312]    [Pg.532]    [Pg.121]    [Pg.248]    [Pg.532]    [Pg.393]    [Pg.231]    [Pg.17]    [Pg.148]    [Pg.1096]    [Pg.226]    [Pg.323]   
See also in sourсe #XX -- [ Pg.542 ]




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Alkynolates

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