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Enol ethers, silyl with acetals

Mukaiyarna-Johnson AJdoJ- Lewis acid promoted condensation of silyl enol ethers with acetals ... [Pg.87]

Recently it was found that the aldol reaction of silyl enol ethers with acetals or aldehydes is effectively promoted by a catalytic amount of trityl perchlorate to give the corresponding aldols in good yields (44,45). Polymer-bound trityl perchlorate also successfully catalyzed the aldol reaction (45). [Pg.288]

Cross aldol reactions of silyl enol ethers with acetals (25 - 26, and 27 - 28) are also mediated by EGA. The reaction runs smoothly at —78 °C in a CH2CI2— —LiClO —Et NClO —(Pt) system. At an elevated temperature protonation of both enol ether and acetal occurs competitively to give 28 in a poor yield. Table 5 summarizes yields and diastereoselectivities of 28 obtained by EGA, TiCl TMSOTf and TrtClO 5 . The EGA method is superior to TiCl with regard to the stereocontrol, and comparable with TMSOTf and TrtClO in both stereocontrol and yield. [Pg.179]

Aldol-type condensation of silyl enol ethers with acetals under the influence of la is rather familiar. Unlike the Mukaiyama aldol reaction, 1-5 mol % loading of la is enough to complete the coupling reaction under mild conditions [20]. This transformation is applicable to the synthesis of a wide variety of / -alkoxy carbonyl substrates and has three characteristic features ... [Pg.359]

AldolCondensations. Cation-exchanged montmorillonites accelerate the aldol condensation of silyl enol ethers with acetals and aldehydes. Similarly, the aldol reaction of silyl ketene acetals with electrophiles is catalyzed by solid-acid catalysts. Neither report discussed the use of iron montmorillonite for these reactions however, some reactivity is anticipated. [Pg.285]

For some condensations with silylated substrates as starting compounds, trimethylsilyl inflate can be used as a catalyst [103, 104, 105] Atypical example of such a reaction is the aldol type condensation of silyl enol ethers and acetals catalyzed by 1-5 mol% of trimethylsilyl inflate [103] (equation 53)... [Pg.961]

Nitradon of the potassium enolates of cycloalkanones with pentyl n silyl enol ethers with nitroniiim tetraflnoroborate " provides a method for the preparadon of cydic ct-nitro ketones. Tnflnoroacetyl nitrate generated from tnflnoroacedc anhydnde and ammonium nitrate is a mild and effecdve nitradug reagent for enol acetates fEq. 2.411. ... [Pg.16]

On the other hand, the method of Mukaiyama can be succesfully applied to silyl enol ethers of acetic and propionic acid derivatives. For example, perfect stereochemical control is attained in the reaction of silyl enol ether of 5-ethyl propanethioate with several aldehydes including aromatic, aliphatic and a,j5-unsaturated aldehydes, with syir.anti ratios of 100 0 and an ee >98%, provided that a polar solvent, such as propionitrile, and the "slow addition procedure " are used. Thus, a typical experimental procedure is as follows [32e] to a solution of tin(II) triflate (0.08 mmol, 20 mol%) in propionitrile (1 ml) was added (5)-l-methyl-2-[(iV-l-naphthylamino)methyl]pyrrolidine (97b. 0.088 mmol) in propionitrile (1 ml). The mixture was cooled at -78 °C, then a mixture of silyl enol ether of 5-ethyl propanethioate (99, 0.44 mmol) and an aldehyde (0.4 mmol) was slowly added to this solution over a period of 3 h, and the mixture stirred for a further 2 h. After work-up the aldol adduct was isolated as the corresponding trimethylsilyl ether. Most probably the catalytic cycle is that shown in Scheme 9.30. [Pg.267]

The reactions proceeded efficiently under mild conditions in short time. The silyl enol ethers reacted with the activated acetals or aldehydes at -78 °C to give predominant erythro- or threo-products [136, 137] respectively. In the same manner, the aldol reaction of thioacetals, catalyzed by an equimolar amount of catalyst, resulted in <-ketosulfides [139] with high diastereoselectivity. In the course of this investigation, the interaction of silyl enol ethers with a,]3-unsaturated ketones, promoted by the trityl perchlorate, was shown to proceed regioselec-tively through 1,2- [141] or 1,4-addition [138]. The application of the trityl salt as a Lewis acid catalyst was spread to the synthesis of ]3-aminoesters [142] from the ketene silyl acetals and imines resulting in high stereoselective outcome. [Pg.373]

An interestingly short total synthesis of quadrone was developed by Kende and coworkers who made application of Pd(II)-mediated cycloalkenylation of silyl enol ethers (Scheme LV) Their point of departure was 609 which was converted directly to 610, Reaction of this silyl enol ether with palladium acetate in acetonitrile gave predominantly 6JI which could be cyclized to 612. From this intermediate, it was possible to prepare the known keto acid. [Pg.50]

Tin enolates of ketones can be generated by the reaction of the enol acetate 733 with tributyltin methoxide[601] and they react with alkenyl halides via transmetallation to give 734. This reaction offers a useful method for the introduction of an aryl or alkenyl group at the o-carbon of ketones[602]. Tin enolates are also generated by the reaction of silyl enol ethers with tributyltin fluoride and used for coupling with halides[603]. [Pg.406]

With an amino acid-derived chiral auxiliary employed in the chloroformate, reaction of silyl enol ethers with isoquinolinium salts showed not only regiospecificity, but some stereoselectivity as well (Equation 61) <1999SL1154>. The addition of ketene silyl acetals to an W-acylpyridinium salt containing a chiral 2,2-dimethylox-azolidine at C-3 gave 1,4-dihydropyridines with excellent stereoselectivity <2002JA8184>. [Pg.70]

Nicholas reaction of acetophenone silyl enol ether with the bis-acetal-alkynylcobalt complex 18 using an excess of Lewis acid affords a furyl-a-pyrone in quantitative yield (Equation 37) <2003EJ01652>. [Pg.511]

A further example is the cyclization of 3 with TiClj to give 4, 5a, and 5b in the ratio 2 3 3, respectively (88% combined yield). Only 5a and 5b are formed with SnCU (23% yield). The formation of an eight-membered ring is striking, particularly in the absence of high dilution, and is attributed to coordination of the silyl enol ether and acetal oxygens to the Ti catalyst. [Pg.502]

Aldol-type reactions. Trityl perchlorate catalyzes an aldol-type reaction between silyl enol ethers and acetals or ketals to give p-alkoxy ketones. The yields are comparable to those obtained with TiCU (6, 594). The iyn-aldol is formed predominantly ( 4 1). [Pg.549]

Stereoselective a-alkylation of ketones. This reaction can be effected by reaction of silyl enol ethers with benzyl acetates complexed with Cr(CO), in the presence of ZnCh (I equiv.). This methodology is particularly useful because only the adduct anti to the metal is obtained. Use of an optically active chromium complex such as 1 results in 100% stereoselective alkylation. [Pg.575]

Exposure of the silyl enol ethers of aldehydes to peracid in dichloromethane, followed by treatment of the intermediate masked hydroxy aldehyde (c/. (53) to (54) Section 2.3.2.1.3.i) with acetic anhydride and triethylamine, allows isolation of the product a-acetoxy aldehydes in moderate yield. Similarly treatment of the silyl enol ethers with LTA in acetic acid containing potassium acetate effects the same transformation. ... [Pg.186]


See other pages where Enol ethers, silyl with acetals is mentioned: [Pg.438]    [Pg.260]    [Pg.260]    [Pg.223]    [Pg.655]    [Pg.655]    [Pg.655]    [Pg.438]    [Pg.260]    [Pg.260]    [Pg.223]    [Pg.655]    [Pg.655]    [Pg.655]    [Pg.104]    [Pg.69]    [Pg.923]    [Pg.331]    [Pg.132]    [Pg.528]    [Pg.7]    [Pg.219]    [Pg.59]    [Pg.710]    [Pg.132]    [Pg.364]    [Pg.547]    [Pg.132]    [Pg.502]    [Pg.3265]   
See also in sourсe #XX -- [ Pg.461 ]




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Acetals ether

Acetals reaction with silyl enol ethers

Acetals silyl enol ethers

Acetals with enol ethers

Acetals, acid catalyzed with silyl enol ethers

Acetate enolates

Acetic ether

Enol acetals

Enol acetates

Enol silyl ethers, reaction with acetals/ketals

Enolates silylation

Silyl acetate

Silyl enol ethers

Silyl enolate

Silyl enolates

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