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Alkynes, hydroboration

Pinacolborane (PBH, 537) sluggishly hydroborates alkynes and alkenes. Hydro-boration of alkyne with PBH is catalyzed by hydrozirconocene chloride (HCp2ZrCl) [206], CpNi(Ph3P)Cl and Rh(CO)(Ph3P)2Cl [207] at room temperature. Hydrobora-tion of 4-octene with PBH at room temperature gives either terminal or internal boranes 538 or 539 regioselectively, depending on the catalyst used [207]. PBH is more stable than CBH, and easier to handle. [Pg.287]

The more reactive HBrjB-SMej hydroborates alkynes directly. The reaction stops at the monohydroboration stage without the need of xs alkyne to give the corresponding... [Pg.101]

VS, 1 -alkene selectivity (k i - 1.8) of 3 is actually the reverse of the behavio- of 9-BBN-H which hydroborates alkynes faster than alkenes (k 6.8) (49-50), However, by far the most intriguing feature of the new reagent was revealed in the hydroboration of the 2-butenes. The cis and trans olefins give the opposite... [Pg.182]

Cis-olefins or cis./rjns-dienes can be obtained from alkynes in similar reaction sequences. The alkyne is first hydroborated and then treated with alkaline iodine. If the other substituents on boron are alkyl groups, a cis-olefin is formed (G. Zweifel, 1967). If they are cir-alkenyls, a cis, trans-diene results. The reactions are thought to be iodine-assisted migrations of the cis-alkenyl group followed by (rans-deiodoboronation (G. Zweifel, 1968). Trans, trans-dienes are made from haloalkynes and alkynes. These compounds are added one after the other to thexylborane. The alkenyl(l-haloalkenyl)thexylboranes are converted with sodium methoxide into trans, trans-dienes (E. Negishi, 1973). The thexyl group does not migrate. [Pg.37]

Organoboranes undergo transmetallation. 1-Hexenylboronic acid (438) reacts with methyl acrylate via the transmetallation with Pd(OAc)2, giving methyl 2,4-nonadienoate (439)[399], The ( )-alkenylboranes 440, prepared by the hydroboration of terminal alkynes, are converted into the alkylated ( )-alkenes 441 by treatment with an equivalent amount of Pd(OAc)2 and triethylamine[400]. The ( )-octenylborane 442 reacts with CO in MeOH in the... [Pg.84]

The coupling of alkenylboranes with alkenyl halides is particularly useful for the stereoselective synthesis of conjugated dienes of the four possible double bond isomers[499]. The E and Z forms of vinylboron compounds can be prepared by hydroboration of alkynes and haloalkynes, and their reaction with ( ) or (Z)-vinyl iodides or bromides proceeds without isomerization, and the conjugated dienes of four possible isomeric forms can be prepared in high purity. [Pg.221]

Its reactions with olefins, governed by steric rather than electronic factors, are very sluggish. Even simple 1-alkenes require 8 h at 25°C for complete reaction. In contrast, alkynes are hydroborated with great ease to alkenylboranes, high steric requirements of the reagent preventing dihydroboration (117). [Pg.311]

Dibromoborane—dimethyl sulfide is a more convenient reagent. It reacts directly with alkenes and alkynes to give the corresponding alkyl- and alkenyldibromoboranes (120—123). Dibromoborane differentiates between alkenes and alkynes hydroborating internal alkynes preferentially to terminal double and triple bonds (123). Unlike other substituted boranes it is more reactive toward 1,1-disubstituted than monosubstituted alkenes (124). [Pg.311]

Both ( )- and (Z)-l-halo-l-alkenes can be prepared by hydroboration of 1-alkynes or 1-halo-l-alkynes followed by halogenation of the intermediate boronic esters (244,245). Differences in the addition—elimination mechanisms operating in these reactions lead to the opposite configurations of iodides as compared to bromides and chlorides. [Pg.315]

An alternative synthesis of (Z)-l-halo-l-alkenes involves hydroboration of 1-halo-l-alkynes, followed by protonolysis (246,247). Disubstituted ( )-and (Z)-a1keny1 bromides can be prepared from ( )- and (Z)-a1keny1 boronic esters, respectively, by treatment with bromine followed by base (248). [Pg.315]

An efficient general synthesis of a-chiral (Z)- and (H)-a1kenes ia high enantiomeric purity is based on the hydroboration of alkynes and 1-bromoaIkynes, respectively, with enantiomericaHy pure IpcR BH readily available by the hydroboration of prochiral alkenes with monoisopiaocampheylborane, followed by crystallization (519). [Pg.324]

In the earlier, longer approach to (Z)-and (E)-alkenes, ThxR BH was used iastead of IpcR BH. It is also possible to prepare a-chiral acetylenes and alkanes by this method (76,520). In a shorter synthesis of a-chiral alkynes, a prochiral disubstituted (Z)-a1kene is hydroborated with... [Pg.324]

A convenient route to three-carbon carboranes is the hydroboration of an alkyne with a preformed dicarbaborane. For example, reaction of ethyne (or propyne) with arachno-4,5-C2B7Hi3 (70) in hexane at 120°C gives a mixture of tri- and tetra-carbaboranes, e.g. (71), (72), (73), (74) in modest yield. Access to other... [Pg.183]

Like alkenes (Sections 7.4 and 7.5), alkynes can be hydrated by either of two methods. Direct addition of water catalyzed by mercury(II) ion yields the Markovnikov product, and indirect addition of water by a hydroboration/ oxidation sequence yields the non-Markovnikov product. [Pg.264]

The hydroboration/oxidation sequence is complementary to the direct, mercury(ll)-catalyzed hydration reaction of a terminal alkyne because different products result. Direct hydration with aqueous acid and mercury(IJ) sulfate leads to a methyl ketone, whereas hydroboration/oxidation of the same terminal alkyne leads to an aldehyde. [Pg.267]

Problem 8.6 What alkyne would you start with to prepare each of the following compounds by a hydroboration/oxidation reaction ... [Pg.267]

The chemistry of alkynes is dominated by electrophilic addition reactions, similar to those of alkenes. Alkynes react with HBr and HC1 to yield vinylic halides and with Br2 and Cl2 to yield 1,2-dihalides (vicinal dihalides). Alkynes can be hydrated by reaction with aqueous sulfuric acid in the presence of mercury(ll) catalyst. The reaction leads to an intermediate enol that immediately isomerizes to yield a ketone tautomer. Since the addition reaction occurs with Markovnikov regiochemistry, a methyl ketone is produced from a terminal alkyne. Alternatively, hydroboration/oxidation of a terminal alkyne yields an aldehyde. [Pg.279]

Markovnikov s rule. 191-193 alkene additions and, 191-193 alkyne additions and. 263 carbocation stability and. 192-193 Hammond postulate and, 198-199 hydroboration and. 224-225 oxymercu ration and, 222 Mass number (A), 4 Mass spectrometer, double-focusing, 411... [Pg.1304]

A synthetically useful virtue of enol triflates is that they are amenable to palladium-catalyzed carbon-carbon bond-forming reactions under mild conditions. When a solution of enol triflate 21 and tetrakis(triphenylphosphine)palladium(o) in benzene is treated with a mixture of terminal alkyne 17, n-propylamine, and cuprous iodide,17 intermediate 22 is formed in 76-84% yield. Although a partial hydrogenation of the alkyne in 22 could conceivably secure the formation of the cis C1-C2 olefin, a chemoselective hydrobora-tion/protonation sequence was found to be a much more reliable and suitable alternative. Thus, sequential hydroboration of the alkyne 22 with dicyclohexylborane, protonolysis, oxidative workup, and hydrolysis of the oxabicyclo[2.2.2]octyl ester protecting group gives dienic carboxylic acid 15 in a yield of 86% from 22. [Pg.458]

Scheme 23. Synthesis of vinyl boranes by hydroboration of alkynes. Scheme 23. Synthesis of vinyl boranes by hydroboration of alkynes.
The synthesis of 10 features the SN2 displacement of the allylic acetate with migration of R2 from the ate complex6. Precursors 9 are prepared by the hydroboration of 3-acetoxy-l-alkynes that are available with very high enantiomeric purity via the asymmetric reduction of the corresponding l-alkyn-3-ones, and a substantial degree of asymmetric induction occurs in the conversion of 9 to 10. Best results, based on the enantioselectivity of reactions of 10 with aldehydes, are obtained when R2 is a bulky group such as isopinocampheyl (79 85 % ee)6. The yields of reactions of 10 with aldehydes are 62-76%. [Pg.314]

Enamines can also be converted to amino alcohols via hydroboration. Allene-boranes react with aldehydes to give alkyne-alcohols. ... [Pg.1014]


See other pages where Alkynes, hydroboration is mentioned: [Pg.622]    [Pg.476]    [Pg.476]    [Pg.306]    [Pg.25]    [Pg.44]    [Pg.530]    [Pg.622]    [Pg.476]    [Pg.476]    [Pg.306]    [Pg.25]    [Pg.44]    [Pg.530]    [Pg.311]    [Pg.311]    [Pg.313]    [Pg.313]    [Pg.316]    [Pg.14]    [Pg.266]    [Pg.266]    [Pg.1301]    [Pg.587]    [Pg.587]    [Pg.58]    [Pg.798]    [Pg.798]   
See also in sourсe #XX -- [ Pg.353 ]

See also in sourсe #XX -- [ Pg.51 , Pg.465 ]

See also in sourсe #XX -- [ Pg.195 , Pg.200 , Pg.366 , Pg.367 ]

See also in sourсe #XX -- [ Pg.51 , Pg.465 ]

See also in sourсe #XX -- [ Pg.404 , Pg.411 , Pg.821 ]

See also in sourсe #XX -- [ Pg.43 , Pg.277 ]

See also in sourсe #XX -- [ Pg.538 , Pg.541 , Pg.544 ]




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Alkenes from alkynes by hydroboration

Alkynes hydroboration reactions

Alkynes hydroboration-oxidation

Alkynes hydroboration/protonolysis

Alkynes hydroborations

Alkynes hydroborations, pinacolborane

Alkynes, Brown hydroboration reaction

Alkynes, addition reactions hydroboration

Alkynes, halo hydroboration

Boranes, vinylreactions with organometallic compounds via hydroboration of 1-alkynes

Catalyzed hydroboration of alkenes and alkynes

Hydroboration Kinetics of Alkynes

Hydroboration of 1-halo-1-alkynes

Hydroboration of alkenes and alkynes

Hydroboration of alkynes

Hydroboration of alkynes -4,4,6-trimethyl1,3,2-dioxaborinane

Hydroboration of terminal alkynes

Hydroboration, alkenes alkynes

Hydroboration-oxidation of alkynes

Hydroborations alkynes, 9-borabicyclo nonane dimer

Internal alkynes hydroboration-oxidation

Metal-catalyzed hydroborations alkynes, pinacolborane

Terminal alkynes hydroboration

Terminal alkynes hydroboration-oxidation

Terminal alkynes hydroborations, pinacolborane

The Addition of Borane to an Alkyne Hydroboration-Oxidation

Uncatalyzed hydroboration of alkenes and alkynes

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