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Exocyclic allylic ethers

Zr-Catalyzed Kinetic Resolution of Exocyclic Allylic Ethers... [Pg.191]

Vinylsilanes react with acetals in the presence of Lewis acids to give allylic ethers, which go on to react further. Intramolecular reactions are less susceptible to this difficulty and provide an opportunity for controlling the configuration of exocyclic double bonds (Scheme 51). As usual with vinylsilanes, the... [Pg.579]

The extention of radical cyclization of (bromomethyl)dimethylsilyl allyl ethers to propargyl analogs 17 has been studied by Malacria and coworkers. The intermediate exocyclic vinyl radical 18 can be either trapped by the hydrogen atom to give, after simple chemical transformations, the trisubstituted alkene 19 (equation 25) or can be added intramolecularly to give cyclic products when suitably located double bonds are present (equations 26 and 27). An attempt to apply this methodology to the stereoselective synthesis of angular and linear triquinane has also been performed. When = t rt-butyl,... [Pg.931]

The exocyclic stannylmethyl allylic ethers 173abc gave the [2,3]-products 178 in 60%, 69%, and 64% yields, respectively fScheme 17.251. [Pg.680]

When 2-iodoalkyl vinylsilyl ethers 231 (Z=Si) were reacted with 224 in the presence of the Co(dppb)Cl2 catalyst, silatetrahydrofurans 232a (Z=Si) were isolated [294], When substrates 231 with substituted allyl groups (R3 and/or R4=alkyl) were treated with catalytic amounts of Co(dppe)Cl2 and 224 or phenylmagnesium bromide, a 5-exo cyclization proceeded and tetrahydrofurans 232c with exocyclic alkenyl units were isolated in 58-89% yield. For substrates with disubstituted alkene acceptors (R3=alkyl, R4=H), the formation of 18% of reduced tetrahydrofuran 232b was also observed [280, 295],... [Pg.256]

Platinum(ll)-catalyzed carbocyclization of a.ty-enynes has been intensively researched lately. For instance, 2-disubstituted l-en-6-ynes react with methanol in the presence of PtCl2 as catalyst to form carbocycles with exocyclic aUcenes. The analogous reactions of 3-allyl propargyl ether or 3-allyl propargyl tosylamine in water using the same catalysts will generate cyclopropyl aldehydes besides the product of cycloisomerization (Scheme 82). The coordination of the... [Pg.3929]

As mentioned in the discussion of the pathways to indoles (Scheme 27), a detailed indole synthesis with two points of diversity based on the Heck reaction has been reported [164]. The indole core structure was synthesized via a 5-exo-tng transition state, which provided the exocyclic double bond that subsequently underwent exo to endo double-bond migration. The anthranilate building block was prepared in solution and immobilized by a method previously described for the loading of 2-aminobenzophenones [Ij. After Fmoc cleavage, the resulting 4-bromo-3-amino-phenyl ether was treated with acid chlorides and pyridine in CH2CI2. As outlined in Scheme 29, alkylation of the anilide with substituted allyl bromides was achieved in the presence of lithium benzyloxazoHdinone in THF. The reaction mixture was treated with base for 1 h and then an aUylic halide was added and the mixture was vortexed for 6 h at room temperature. The alkylation reactions were... [Pg.424]

Mannich-type cyclizations of vinylsilanes have found considerable application in the area of alkaloid total synthesis. Cyclizations that occur in the exocyclic mode with respect to the vinylsilane nucleophile have been widely employed to assemble 3-alkylidenepiperidine substructures with high stereocontrol. Overman and coworkers have made extensive use of the acid-promoted conversion of bicyclic oxazolidines to alkylideneindolizidines in their total syntheses of pumiliotoxin A alkaloids (Scheme 36). - " - An illustration of the mild nature of iminium ion-vinylsilane cyclizations is provided in the conversion of (101) to (102), the penultimate precursor of (-i-)-pumiliotoxin A. This conversion was accomplished in 71% yield by heating (101) at 80 C in a methanolic pyridine-pyridinium tosylate buffer (pH 4.5). More strongly acidic conditions had to be avoided since they led to competitive solvolysis of the allylic benzyl ether functionality of the pumiliotoxin A side chain. To the limits of detection by high... [Pg.1030]


See other pages where Exocyclic allylic ethers is mentioned: [Pg.516]    [Pg.516]    [Pg.334]    [Pg.526]    [Pg.91]    [Pg.353]    [Pg.168]    [Pg.361]    [Pg.88]    [Pg.313]    [Pg.129]    [Pg.356]    [Pg.352]    [Pg.205]    [Pg.62]    [Pg.207]    [Pg.355]    [Pg.319]    [Pg.171]    [Pg.603]    [Pg.603]    [Pg.455]    [Pg.1321]    [Pg.1973]    [Pg.282]    [Pg.2332]    [Pg.62]    [Pg.282]    [Pg.27]    [Pg.603]    [Pg.396]    [Pg.710]    [Pg.279]    [Pg.228]    [Pg.175]    [Pg.306]   
See also in sourсe #XX -- [ Pg.192 ]




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Allyl ethers

Exocyclic

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