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Alkynes reaction with iodine

Both alkynes and alkenes can be obtained from adducts of terminal alkynes and boranes. Reaction with iodine induces migration and results in the formation of the alkylated alkyne.32... [Pg.796]

Advantage has been taken of the aforementioned observations in the synthesis of a terthiophene natural product, arctic acid (147) [123]. Pd-catalyzed carbonylation of bromobisthiophene 25, obtained from the Kumada coupling of 2-thienylmagnesium bromide and 2,5-dibromothiophene, gave bithiophene ester 144, which was converted to iodide 145 by reaction with iodine and yellow mercuric oxide. Subsequent propynylation of 145 was then realized using the Sonogashira reaction with prop-l-yne to give bisthienyl alkyne 146, which was subsequently hydrolyzed to 5 -(l-propynyl)-2,2 -bithienyl-5-carboxylic acid (147), a natural product isolated from the root of Arctium lappa. [Pg.255]

Terminal alkynes are converted in high yield (70-80%) into 1-iodoalkynes by their copper-catalysed reaction with iodine under phase-transfer catalytic conditions... [Pg.53]

Alkenyl boronic acids synthesized from internal alkynes fail to undergo the reaction with iodine and base. However, alkenylboronic acids and esters obtained from internal alkynes react with bromine in the presence of base to afford in excellent yields the corresponding alkenyl bromides (Eq. 112)174),... [Pg.70]

In an attempt to synthesize (Z)-l,2-dihalo-l-alkenes from bromoboration adducts of 1-alkynes with B-X-9-BBN, all efforts have been unsuccessful. Fortunately, it has found that the haloboration of 1-alkynes with tribromoborane, followed by the reaction with iodine or bromine chloride in the presence of sodium acetate gives the expected (Z)-l,2-dihalo- 1-alkenes stereospecifically (>98%) in good yields (Eq. 122)187>. [Pg.73]

Conjugated diynes (cf. 5, 346). A convenient route to these substances, both symmetrical and unsymmetrical, has been developed by Sinclair and Brown. Treatment of 1-alkynyldisiamylboranes with lithium alkynes forms an ate complex (I), which on reaction with iodine at - 78" in THF gives a diync (2). It is also possible to carry out this synthesis without isolation of the l-alkynyl-... [Pg.94]

In the reaction of l-butylseleno-4-alkynes (37) with iodine, the SeBu moiety acts as a neighbouring group to produce tetrahydroselenophenes (38), that is, with the loss of the butyl groups (by analogy with the corresponding methyl ethers ). [Pg.339]

The iodination reaction can also be conducted with iodine monochloride in the presence of sodium acetate (240) or iodine in the presence of water or methanolic sodium acetate (241). Under these mild conditions functionalized alkenes can be transformed into the corresponding iodides. AppHcation of B-alkyl-9-BBN derivatives in the chlorination and dark bromination reactions allows better utilization of alkyl groups (235,242). An indirect stereoselective procedure for the conversion of alkynes into (H)-1-ha1o-1-alkenes is based on the mercuration reaction of boronic acids followed by in situ bromination or iodination of the intermediate mercuric salts (243). [Pg.315]

Shortly after this reaction was reported, Hegedus found46 that imines undergo a similar insertion process. The products (251) are structurally very similar to the alkyne adducts (247), and decomplexation with iodine, followed by treatment with trimethylamine TV-oxide, afforded a variety of substituted pyridones in good yield. [Pg.344]

Furo[2,3- ]pyridines can be synthesized from alkynylpyridones and iodonium sources (Scheme 31) <20060L1113>. Iodine proved to be much more effective at promoting the iodocyclization reaction than other iodonium sources (ICl, A -iodosuccinimide (NIS)). The pyridinium triiodide salt, 104, can be converted into the corresponding pyridinone by treatment with an external source of iodide. In a variation of the reaction, a one-pot synthesis of the furopyridine derivatives 105 can be achieved, with overall yields of 79-92%, by treatment with iodine followed by sodium iodide without isolation of the triiodide salt. Another similar one-pot synthesis involves 3-iodo-2-pyridones, terminal alkynes, and organic halides in a series of two palladium cross-coupling reactions (Equation 45) <20030L2441>. This reaction could also be carried out in a two-step sequence, but the overall reaction yields were typically improved for the one-pot method. [Pg.309]

The Merck process group in Rahway has developed two syntheses of rizatriptan (4) utilizing palladium catalyzed indolization reactions (Schemes 19 and 20). Both routes start from the iodoaniline 51, which was prepared by reaction of 47 with iodine monochloride in the presence of CaCOa. " Palladium catalyzed coupling of iodoaniline 51 with bis-triethylsilyl protected butynol in the presence of NaaCOa provided a mixture of indoles 52a and 52b. This mixture was desilylated with aqueous HCl in MeOH to furnish the tryptophol 53 in 75% yield from 51. Protection of the alkyne prevented coupling at the terminal carbon of the alkyne and tnethylsilyl (TES) was found to be optimal because it offered the correct balance between reactivity (rate of coupling) and... [Pg.176]

In contrast to the reversible reaction of iodine with alkenes, iodination of alkynes yields stable 1,2-diiodoalkenes formed in anti addition.270 271 Very good yields were achieved when iodination was carried out in the presence of y-alumina.125... [Pg.310]

Reaction of hydrazones with iodine under basic conditions, to give azines, shows evidence of diazo intermediates that can be trapped with an internal alkene or alkyne function.92... [Pg.13]

Dinitro-6-phenyliodonium phenolate (146) is a stable iodonium zwitterion484. It reacts under photolytic conditions with various alkenes, alkynes and aromatic compounds to afford 2,3-dihydrobenzo[ ]furans, benzo[6]furans and 6-aryl-2,4-dinitrophenols. The mechanism involves hypervalent iodine compounds (iodinanes, 147) and is illustrated for the reaction with an aromatic compound (equation 127). Compounds 148 are the major products when ArH = PhH, PhOCH3 or 1,4-dimethoxybenzene. With furan and thiophene, 149 is the principal product. The reaction does not proceed with chlorobenzene and nitrobenzene. [Pg.920]

A typical example of such reactions of 1-alkynyltrialkylborates is demonstrated in the synthesis of internal acetylenes. When 1-alkynyltrialkylborates (18), readily prepared from lithium acetylides and trialkylboranes, are treated with iodine, the corresponding internal alkynes are obtained in almost quantitative yields (Eq. 39)... [Pg.81]


See other pages where Alkynes reaction with iodine is mentioned: [Pg.88]    [Pg.266]    [Pg.188]    [Pg.488]    [Pg.316]    [Pg.67]    [Pg.184]    [Pg.177]    [Pg.616]    [Pg.272]    [Pg.240]    [Pg.232]    [Pg.106]    [Pg.363]    [Pg.251]    [Pg.442]    [Pg.1109]    [Pg.67]    [Pg.901]    [Pg.89]    [Pg.273]    [Pg.730]    [Pg.591]    [Pg.101]    [Pg.213]   
See also in sourсe #XX -- [ Pg.1042 ]




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Alkynes iodination

Iodine reactions

Reaction with alkynes

Reaction with iodine

With alkynes

With iodine

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