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Halides, allylic, and

Reduction of aikyl halides. Allylic and benzylic chlorides and bromides are reduced by the reagent almost instantaneously at 25° (S 2 displacement). Simple primary halides are completely reduced in 2 min. Even neopentyl bromide is reduced to neopentane (96% yield) in 3 hr. under reflux. Secondary cycloalkyl bromides are reduced at 25° in 24 hr. Even CAro-2-bromonorbomane (I) can be reduced quantitatively. The... [Pg.313]

Lithiated (and also potassiated) allylic ethers and tertiary amines undergo mainly y-attack by primary alkyl halides. The preference for C-y is particularly strong with the metallated allylic ethers H2C=CHCH2Ot-Bu and H2C=CHCH2OSiEt3 [6,7]. Selectivities in reactions with sec-alkyl halides, allylic and cyclohexyl halides are often considerably lower than with primary alkyl halides [6,8]. Metallated allylic sulfides show mainly a-attack by primary alkyl halides [2,8,17]. [Pg.111]

The intramolecular addition of nudeophiles to palladium-activated triple bonds generates the palladated intermediate 9 (Scheme 6.13). While the latter can be protonated to liberate product, the reactivity of palladium can also be employed to intercept this intermediate with other bond forming reactions. These have provided methods to derivatize the heterocycle at the same time as it is generated. A range of substrates have been coupled with cydization via this approach, including aryl or vinyl halides, allylic and related R-X substrates, amines, halides, as well as carbon monoxide and olefins. [Pg.164]

Alkyl bromides and iodides react more rapidly than chlorides, and the latter may even require warming to produce a reaction in a reasonable time period. Aryl halides are unreactive toward the test reagent, as are generally vinyl or alkynyl halides. Allylic and benzylic halides, even when primary, show reactivities as great as or greater than tertiary halides because of resonance stabilization of the resulting allyl or benzyl carbocations. [Pg.870]

The high regio- and stereoselectivities of the process as well as its tolerance of functional groups underline the potential of the methodology. Its wide synthetic applicability is demonstrated by the preparation of a variety of functionalized heterocycles from readily available alkynes. Aryl and alkenyl halides or triflates, alkynyl halides, allyl and... [Pg.566]

Alkylation of aldol type educts, e.g., /3-hydroxy esters, using LDA and alkyl halides leads stereoselectively to erythro substitution. The erythro threo ratio of the products is of the order of 95 5. Allylic and benzylic bromides can also be used. The allyl groups can later be ozonolysed to gjve aldehydes, and many interesting oligofunctional products with two adjacent chiral centres become available from chiral aldol type educts (G. Prater, 1984 D. Seebach, 1984 see also M. Nakatsuka, 1990, p. 5586). [Pg.27]

Pyrroles do not react with alkyl halides in a simple fashion polyalkylated products are obtained from reaction with methyl iodide at elevated temperatures and also from the more reactive allyl and benzyl halides under milder conditions in the presence of weak bases. Alkylation of pyrrole Grignard reagents gives mainly 2-alkylated pyrroles whereas N-alkylated pyrroles are obtained by alkylation of pyrrole alkali-metal salts in ionizing solvents. [Pg.53]

Most of the alkylations were carried out by adding a solution of 3,3-ethylenedioxypregna-5,16-dien-20-one in tetrahydrofuran to a solution of lithium in liquid ammonia to the point of color discharge. Treatment with the alkyl halide then furnishes the corresponding 17a-alkyl derivative (10). After hydrolysis of the 3-ketal group, 17a-methyl-, ethyl-, propyl-, butyl-, hexyl-, octyl-, allyl-, and benzylprogesterones are obtained. [Pg.98]

Allylation of perfluoroalkyl halides with allylsilanes is catalyzed by iron or ruthenium carbonyl complexes [77S] (equation 119) Alkenyl-, allyl-, and alkynyl-stannanes react with perfluoroalkyl iodides 111 the presence ot a palladium complex to give alkenes and alkynes bearing perfluoroalkyl groups [139] (equation 120)... [Pg.478]

The copper species formed depends on the solvent, and three different species were detected by F NMR, although the structure of each species was not elucidated [245 This copper reagent undergoes a variety of coupling reactions with aryl, alkenyl, allyl, and acetylenic halides [244, 245 (equation 162)... [Pg.709]

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]

With enamines of cyclic ketones direct C alkylation occurs with allyl and propargyl as well as alkyl halides. The reaction is again sensitive to the polarity of the solvent (29). The pyrrolidine enamine of cyclohexanone on reaction with ethyl iodide in dioxane gave 25% of 2-ethylcyclohexanone on hydrolysis, while in chloroform the yield was increased to 32%. [Pg.121]

A fundamental problem in the alkylation of enamines, which is inherent in the bidentate system, is the competition between the desired carbon alkylation and attack at the nitrogen. With unactivated alkyl halides (3,267), this becomes especially serious with the enamines derived fromcycloheptan-one, cyclooctanone, cyclononanone, and enamines derived from aldehydes. Increasing amounts of carbon alkylation are found with the more reactive allyl and benzyl halides (268-273). However, with allyl halides one also observes increasing amounts of dialkylation of enamines. [Pg.352]

Nucleophilic (8 2) reactions for the formation of benzyl, allyl, and certain alkyl phosphates [e.g., Me4N (R0)2P(0)0 and an alkyl halide in refluxing... [Pg.665]

With acyl halides, the corresponding acyl phosphonates are obtained. Furthermore allylic and acetylenic halides, as well as a-halogenated carboxylic esters and dihalides, can be used as starting materials. If substituents R and R are different, a mixture of products may be obtained, because the reaction product RX 5 can further react with phosphite 1 that is still present ... [Pg.15]

Differences in solubility of the reactants may for example be utilized as follows. Sodium iodide is much more soluble in acetone than are sodium chloride or sodium bromide. Upon treatment of an alkyl chloride or bromide with sodium iodide in acetone, the newly formed sodium chloride or bromide precipitates from the solution and is thus removed from equilibrium. Alkyl iodides can be conveniently prepared in good yields by this route. Alkyl bromides are more reactive as the corresponding chlorides. Of high reactivity are a-halogen ketones, a-halogen carboxylic acids and their derivatives, as well as allyl and benzyl halides. [Pg.113]

The reaction works well with primary alkyl halides, especially with allylic and benzylic halides, as well as other alkyl derivatives with good leaving groups. Secondary alkyl halides give poor yields. Tertiary alkyl halides react under the usual reaction conditions by elimination of HX only. Nitriles from tertiary alkyl halides can however be obtained by reaction with trimethylsilyl cyanide 4 ... [Pg.185]

Secondary alkyl halides Sjvj2 substitution occurs if a weakly basic nucleophile is used in a polar aprotic solvent, E2 elimination predominates if a strong base is used, and ElcB elimination takes place if the leaving group is two carbons away from a carbonyl group. Secondary allylic and benzyiic alkyl halides can also undergo S l and El reactions if a weakly basic nucleophile is used in a pro tic solvent. [Pg.394]

In the reaction of 88 with /(-phenethyl bromide, l-phenethyl-3-phenylpropyl methyl sulfoxide and bis-3-phenylpropyl sulfoxide, besides 3-phenylpropyl methyl sulfoxide are obtained118. Sulfoxides, bearing a /1-hydrogen to the sulfmyl function, give olefins upon thermolysis. Utilizing this reaction, Trost and Bridges120 alkylated benzyl phenyl sulfoxide, 3,4-methylenedioxybenzyl phenyl sulfoxide, phenylthiomethyl phenyl sulfoxide, phenylsulfinylmethyl phenyl sulfoxide and cyanomethyl phenyl sulfoxide with alkyl, allyl and benzyl halides and subjected these sulfoxides to thermolysis, obtaining olefins in one-pot processes. [Pg.607]

Benzylic, allylic and propargylic positions enhance the cathodic cleavage rate of C— heteroatom bonds as, for example, in the reduction of benzylic and allylic halides or alcohols56. Similar activated sulphones, due to their acidity, are in a class apart. Figure 8 shows the similitude between the cathodic behaviour of an allylic sulphone and its isomer, i.e., the corresponding vinylic sulphone when the electrolyses are run in an aprotic solvent. However, in the presence of an excess of proton donor, discrepancies appear. [Pg.1032]

Allyl- and substituted allylstannanes89 as well as allylcobaloximes90-92 undergo substitution with sulfonyl halides ... [Pg.1109]

The "direct synthesis (39) has obvious attractions as an industrial process, but, in the absence of a catalyst, it proceeds readily only for allyl and benzyl halides, and much attention has been directed towards finding suitable promoters for the reactions. [Pg.3]

Cooper(I) carboxylates give esters with primary (including neopentyl without rearrangement), secondary, and tertiary alkyl, allylic, and vinylic halides. A simple Sn mechanism is obviously precluded in this case. Vinylic halides can be converted to vinylic acetates by treatment with sodium acetate if palladium(II) chloride is present. ... [Pg.489]

Primary amines can be prepared from alkyl halides by the use of hexamethylenetetramine followed by cleavage of the resulting salt with ethanolic HCl. The method, called the Delepine reaction, is most successful for active halides such as allylic and benzylic halides and a-halo ketones, and for primary... [Pg.501]

Allylic and Propargylic Coupling With a Halide Substrate... [Pg.541]


See other pages where Halides, allylic, and is mentioned: [Pg.74]    [Pg.407]    [Pg.74]    [Pg.5348]    [Pg.74]    [Pg.5347]    [Pg.205]    [Pg.74]    [Pg.407]    [Pg.74]    [Pg.5348]    [Pg.74]    [Pg.5347]    [Pg.205]    [Pg.209]    [Pg.215]    [Pg.340]    [Pg.105]    [Pg.434]    [Pg.701]    [Pg.155]    [Pg.380]    [Pg.398]    [Pg.116]    [Pg.138]    [Pg.488]    [Pg.500]    [Pg.519]    [Pg.538]    [Pg.541]    [Pg.541]    [Pg.552]   


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