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Enolates, fluorination

Scheme 5.133 Stoichiometric reagents 540 and 541 for enantioselective enolate fluorination. Scheme 5.133 Stoichiometric reagents 540 and 541 for enantioselective enolate fluorination.
Scheme 15.31 Sequential enolate fluorination of the Corey laetone... Scheme 15.31 Sequential enolate fluorination of the Corey laetone...
A -dien-3-ol ethers gives rise to 6-substituted A" -3-ketones. 6-Hydroxy-A" -3-ketones can be obtained also by autooxidation.Structural changes in the steroid molecule may strongly affect the stability of 3-alkyl-A -ethers. Thus 11 j5-hydroxyl and 9a-fluorine substituents greatly increase the lability of the enol ether/ while halogens at C-6 stabilize this system to autooxidation and acid hydrolysis. [Pg.386]

The enamines, enol ethers and enol acetates of A -3-keto steroids provide important substrates for fluorination with FCIO3. Reaction of such A -enol ethers and acetates (6) with perchloryl fluoride results in 6a- and 6jff-fluoro-A -3-ketones (7) and (8), the latter representing the more abundant isomer. Tetrahydrofuran or dioxane-water mixtures appear to be particu-... [Pg.475]

It is more reactive than perchloryl fluoride and therefore not without danger. It forms, for instance, a highly explosive product with pyridine. Like perchloryl fluoride it reacts with enol ethers, esters and enamines, but at lower temperature (—78°) to yield the fluorinated ketones as well as addition... [Pg.483]

Selective fluonnation in polar solvents has proved commercially successful in the synthesis of 5 fluorouracil and its pyrimidine relatives, an extensive subject that will be discussed in another section Selective fluonnation of enolates [47], enols [48], and silyl enol ethers [49] resulted in preparation of a/phn-fluoro ketones, fieto-diketones, heta-ketoesters, and aldehydes The reactions of fluorine with these functionalities is most probably an addition to the ene followed by elimination of fluonde ion or hydrogen fluoride rather than a simple substitution In a similar vein, selective fluonnation of pyridmes to give 2-fluoropyridines was shown to proceed through pyridine difluondes [50]... [Pg.109]

Systems usually fluonnated by electropositive fluorine reagents include acti-vated alkenes (enol ethers, enol acetates, silyl enol ethers, and enamines), activated aromatic systems, certain slightly activated carbon-hydrogen bonds, and selected organometallics. [Pg.133]

Trimelhylsilyl enol ethers are effective substrates in fluorination with fluo-roxytrifluoromethanefor the preparation of a-fluoro esters, amides and aldehydes [J7] (equations 13-15)... [Pg.142]

These reactions liberate carbonyl fluonde and fluorotnmethylsilane and thus require no hydrolysis A fluorinated erythromycin derivative is obtained from fluorination of 3 O raycarosyl-8 9-anhydroerythronolideB 6,9 hemiacetal, an enol ether [iS] (equation 16)... [Pg.142]

Acyl hypofluorites react readily with ends, enol acetates, vinyl ethers, and enolates [39, 40, 41] (Table 2, entries 1-7) Steroidal enol acetates are also fluorinated smoothly [39] (equations 17-19)... [Pg.143]

Chemistry of Organic Fluorine Compounds ll Table 2. Fluorination of Enols and Enolates... [Pg.144]

Both the Af-fluorosulfonamides and the A -fluoroammonium salts are very effective in the fluormation of enol acetates, enamines, silyl enol ethers, and enolates (Table 2) The reactions are thought to proceed through a mechanism which involves Sf 2 attack on the fluorine atom, but contributions from electron-transfer pathways also exist [65, 68, 73, 75, 76, 79, 80, 81, 82]... [Pg.155]

The fluorination of P-diketones and p-ketoesters with N-/luorobis(trifluo-romethanesulfonyl)imide (Table 3a, B) can be controlled to give either mono-fluorination or difluorination. Monofluorination occurs when the strong acid, bis(trifluoromethanesulfonyl)imide, a reaction product, is removed by addition of water, which prevents further enolization and fluormation of the monofluoro adduct [83] (equation 38)... [Pg.155]

Fluorinations of enolates with chiral reagent D (Table 3a) give moderate degrees of enantiomeric excess [671 (equation 43). [Pg.156]

The fluonnation of both mono and dinitro enolates proceeds well with perchloryl fluoride. The mononitro fluorinated intermediates have been used to develop fluorinated materials of general synthetic utility [III, 113] (equation 63)... [Pg.164]

The enol ether formed by a reaetion of benzyl alcohol with perfluorocyclo-pentene is transformed on heating in the presence of concentrated sulfunc acid into a fluorinated enol [25] (equation 22)... [Pg.450]

Enolate anions of p-keto esters react with some fluoroolefms, initially by replacement of a vinylic fluorine atom, to give ultimately heterocyclic products [2S, 29] (equation 25). [Pg.452]

A fluormated enol ether formed by the reaction of sodium ethoxide with chlorotnfluoroethylene is much less reactive than the starting fluoroolefin To replace the second fluorine atom, it is necessary to reflux the reaction mixture. The nucleophilic substitution proceeds by the addition-elimination mechanism [30] (equation 26). [Pg.452]

Annelation of enamines or enolates with fluorinated methyl vinyl ketones gives the corresponding cyclohexenones [116, 117] (equation 101)... [Pg.473]

In contrast, fluorinated ketones have been used as both nucleophilic and electrophilic reaction constituents The (Z)-lithium enolate of 1 fluoro 3,3-di-methylbutanone can be selectively prepared and undergoes highly diastereoselec-tive aldol condensations with aldehydes [7] (equation 8) (Table 4)... [Pg.617]

The key step to this first reported case of the highly diastereoselective addition of a fluorinated enolate in an aldol process is the selective formation of the enolate a,a-Difluonnated enolates prepared by a metallation process employing either a zinc-copper couple [S] or reduced titanium species [9] undergo aldol condensation smoothly (equation 9) (Table 5)... [Pg.617]

Table 6. Aldol Reaction of Fluorinated Enol Phosphates with Aldehydes [14 ... Table 6. Aldol Reaction of Fluorinated Enol Phosphates with Aldehydes [14 ...
The reactions of fluorinated esters and amides to form, respectively, enol ethers [47] and enamines [4S] give high yields and are interesting synthetic transformations (equations 34 and 35) (Table 12)... [Pg.633]

Table 12. Fluorinated Esters and Amides in the Wittig Reaction to Form Enol Ethers [47 and Enamines 48 ... Table 12. Fluorinated Esters and Amides in the Wittig Reaction to Form Enol Ethers [47 and Enamines 48 ...
Because of thetr electron deficient nature, fluoroolefms are often nucleophihcally attacked by alcohols and alkoxides Ethers are commonly produced by these addition and addition-elimination reactions The wide availability of alcohols and fliioroolefins has established the generality of the nucleophilic addition reactions The mechanism of the addition reaction is generally believed to proceed by attack at a vinylic carbon to produce an intermediate fluorocarbanion as the rate-determining slow step The intermediate carbanion may react with a proton source to yield the saturated addition product Alternatively, the intermediate carbanion may, by elimination of P-halogen, lead to an unsaturated ether, often an enol or vinylic ether These addition and addition-elimination reactions have been previously reviewed [1, 2] The intermediate carbanions resulting from nucleophilic attack on fluoroolefins have also been trapped in situ with carbon dioxide, carbonates, and esters of fluorinated acids [3, 4, 5] (equations 1 and 2)... [Pg.729]

Fluorination of an enamine, enol ether, or enol acetate with CF3OF gave 60-70% yields of fluoroketone (708). Bromination of an endiamine gave the bis-imonium salt (647). [Pg.417]

In this case, the enol form is not more stable than the keto form (115). The enol form is less stable, and converts to the keto form upon prolonged heating. It can, however, be kept at room temperature for long periods of time because the tautomerization reaction (12-3) is very slow, owing to the electron-withdrawing power of the fluorines. [Pg.75]

Importance of enol formation for y keto ester fluorination... [Pg.611]


See other pages where Enolates, fluorination is mentioned: [Pg.492]    [Pg.267]    [Pg.239]    [Pg.312]    [Pg.313]    [Pg.492]    [Pg.267]    [Pg.239]    [Pg.312]    [Pg.313]    [Pg.474]    [Pg.477]    [Pg.41]    [Pg.72]    [Pg.110]    [Pg.297]    [Pg.540]    [Pg.341]    [Pg.74]    [Pg.775]    [Pg.777]   
See also in sourсe #XX -- [ Pg.25 , Pg.542 ]

See also in sourсe #XX -- [ Pg.2 , Pg.69 ]




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Enol acetates fluorination

Enol ethers fluorination

Enol structures, fluorination

Enolates asymmetric electrophilic fluorinations

Enolates fluorinated

Enolates fluorinations

Enols, fluorination

Enols, fluorination

Ester enolates fluorination,

Fluorinated compounds, enol

Fluorination ketone enolates,

Fluorination silyl enols

Fluorinations silyl enol ethers

Ketones enantioselective fluorination, enolates

Silyl enol ethers enantioselective fluorination

Silyl enol ethers fluorination

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