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Allyl ethers cyclization

Aryl radicals participate in radical cyclization reactions when the aromatic ring has an alkene or alkyne substituent. o-Iodo aryl allyl ethers cyclize to benzofuran derivatives, for example, when treated with AIBN, aqueous H3PO2 and NaHCOs in ethanol. Cyclization of an o-bromo-A-acyl aniline (a methacrylic acid derivative) with AIBN/BusSnH gave an indolone under the typical conditions used for cyclization of alkenes. [Pg.1127]

In the case of (bromomcthyl)dimethylsilyl allyl ethers, cyclization of 4-substituted derivatives gives l,5-/rw .f-disubstituted products in accord with the theoretical prediction1. Treatment of the ethers with tributyltin hydride in a free-radical process, followed by successive oxidation with hydrogen peroxide, gives the corresponding 1.3-diols with high stereoselectivity30. The stereoselectivity improves if the bulk of the C-4 substituent is increased. [Pg.59]

The 7, i5-unsaturated alcohol 99 is cyclized to 2-vinyl-5-phenyltetrahydro-furan (100) by exo cyclization in aqueous alcohol[124]. On the other hand, the dihydropyran 101 is formed by endo cyclization from a 7, (5-unsaturated alcohol substituted by two methyl groups at the i5-position. The direction of elimination of /3-hydrogen to give either enol ethers or allylic ethers can be controlled by using DMSO as a solvent and utilized in the synthesis of the tetronomycin precursor 102[125], The oxidation of the optically active 3-alkene-l,2-diol 103 affords the 2,5-dihydrofuran 104 in high ee. It should be noted that /3-OH is eliminated rather than /3-H at the end of the reac-tion[126]. [Pg.35]

The cyclic 2,4-dienoate 184, formed by the Pd-catalyzed cyclization of the 1,6-enyne 183, reacted with 154 to form the azulene derivative 185[118], The 3-methylenepyrrolidine 188 is formed by the reaction of the Zn reagent 186 with the chiral imine 187 with high diastereomeric excess. The structure of the allylic ethers is important for obtaining high diastereoselectivity[l 19],... [Pg.315]

Trost et al 1 have observed product distribution to be dependent in part on the steric and electronic properties of the substrate. For example, linear enyne 48 (Equation (30)) cyclized exclusively to the Alder-ene product 49, whereas branching at the allylic position led to the formation of 1,3-diene 50 (Equation (31)) under similar conditions. Allylic ethers also give 1,3-dienes this effect was determined not to be the result of chelation, as methyl ethers and tert-butyldimethylsilyl ethers both gave dialkylidene cyclopentanes despite the large difference in coordinating ability. [Pg.570]

Allylic amination is important for the solid-phase organic synthesis.15 The solid-phase allylic aminations are devised into the G-N bond formation on solid support and the deprotection of allyl ethers. As a novel deprotection method, the palladium-catalyzed cyclization-cleavage strategy was reported by Brown et al. (Equation (4)).15a,15b The solid-phase synthesis of several pyrrolidines 70 was achieved by using palladium-catalyzed nucleophilic cleavage of allylic linkages of 69. [Pg.703]

High oxidation state alkylidene complexes in which a heteroatom is bound to the alkylidene carbon atom are extremely rare [41]. Since the approach shown in Eq. 43 failed, the related approach shown in Eq. 44 was taken to prepare the medium-sized ring subunits [222]. The latter product was formed in good yield when n=2, R H, R2=Et, but only poor yield when n=2, R =Et, R2=H, possibly due to unfavorable interactions between the ethyl substituent and transannular groups in the transition state for cyclization of the allyl ether [222]. Ruthenium catalysts either failed or gave low yields, presumably because of the steric hindrance associated with ring-closing dienes of this type. [Pg.38]

Claisen rearrangementThe allyl ether 1 when heated rearranges and cyclizes slowly and in low yield to the dihydrobenzofuran 2. However, the dianion (NaH) of 1 rearranges in refluxing DMF mainly to the isomeric dihydrobenzofuran 3, a precursor to the antibiotic ( )-atrovenetin (4). [Pg.288]

A simple synthesis of 3-substituted and 23-disubstituted 4-chloiofuians was accomplished. It involves a CuCl/bipy-catalyzed regioselective cyclization of l-acetoxy-2.22-trichloroethyl allyl ether followed successively by dechloroacetoxylation with Zn dust and tandem dehydro-halogenation-aromatization with tBuOK/18-crown-6 <99CC2267>. [Pg.144]

The above synthetic methods for oxetane all involve formation of a new C—O bond. Cyclization by formation of a new C—C bond has been applied with compounds having benzylic or alkylic CH groups. Recent examples of this type of ring closure are the rearrangement of trans- 2,3-epoxycyclohexyl allyl ether by means of s-butyllithium and the dehydrochlorination of a-cyanobenzyl 2-chloroethyl ether with aqueous base and phase transfer catalyst (equation 86). Both reactions probably involve carbanion intermediates (76TL2115, 75MIP51300). [Pg.393]

Larock, R. C. Stinn, D. E. Synthesis of Benzofurans via Palladium-Promoted Cyclization of Ortho-Substituted Aryl Allyl Ethers, Tetrahedron Lett. 1988,29,4687-4690. [Pg.74]

Phenylselenoetherification (8, 26-28). This cyclization has been described in detail.6 The 16 examples reported indicate that the reaction is applicable to unsaturated primary, secondary, and tertiary alcohols as well as to phenols. The most important use is for synthesis of allylic ethers by syn-selenoxide elimination, which proceeds selectively away from the oxygen. The value of this methodology for synthesis of natural products is illustrated by a synthesis of a muscarine analog (1), outlined in equation (I). [Pg.18]

A variation on this asymmetric catalytic allylation scheme employed (3-diketones or (3-keto ester nucleophiles with allyl ethers and a palladium-DIOP catalyst.434 The chiral center generated is now one carbon removed from the allyl ligand. As a result, somewhat lower optical yields were observed (-10% equation 353). A variety of chiral phosphines were evaluated in the cyclization of (3-keto esters. Optical yields up to 48% were measured in these reactions435... [Pg.653]

The use of Lewis acids in controlling the stereoselective outcome of radical cyclization reactions has been explored, in particular the effect of aluminium-based Lewis acids using low temperature Et3B/Bu3SnH-initiated procedures.171,172 For example, cyclization of propargyl ether (78) or allyl ether (79) in the presence of Lewis acid (80) can completely reverse the normal selectivity (Scheme 34).171 The effect of aluminium Lewis acids on the diastereoselectivity of 6-exo cyclization of unsaturated chiral menthol esters has been studied.172 Cyclization at low temperature in the presence of the Lewis acid MAD modified the de of the reaction from 31 to 98%. [Pg.123]

On another front, the mixture of allylic alcohols 512 and 513 was converted by reaction with methanesulfonic acid anhydride in the presence of triethylamine to a mixture of the corresponding mesylates, which were subjected collectively to methanolysis to afford 514, and none of the allylic ether epimeric at C-3 was isolated. N Debenzylation of 514 followed by a classic Pictet-Spengler cyclization then afforded ( )-buphanisine (361) (208). [Pg.347]


See other pages where Allyl ethers cyclization is mentioned: [Pg.159]    [Pg.159]    [Pg.45]    [Pg.70]    [Pg.334]    [Pg.335]    [Pg.139]    [Pg.159]    [Pg.111]    [Pg.1079]    [Pg.226]    [Pg.39]    [Pg.192]    [Pg.832]    [Pg.62]    [Pg.590]    [Pg.142]    [Pg.353]    [Pg.354]    [Pg.196]    [Pg.432]    [Pg.903]    [Pg.780]    [Pg.32]    [Pg.485]    [Pg.234]    [Pg.47]    [Pg.333]    [Pg.362]   
See also in sourсe #XX -- [ Pg.317 ]




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