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Benzynes synthesis

Y. Yamashita, T. Hayashi, M. Masumura, Reactions of substituted pyridinium N-imines with benzyne synthesis of pyrido [1,2-6] indazoles... [Pg.74]

Decomposition of its internal salt (a zwitter-ion) provides a convenient source of benzyne for organic synthesis. [Pg.36]

Diallylsulfonium salts undergo intramolecular allylic rearrangement with strong bases to yield 1,5-dienes after reductive desulfurization. The straight-chain 1,5-dienes may be obtained by double sulfur extrusion with concomitant allylic rearrangements from diallyl disulfides. The first step is achieved with phosphines or phosphites, the second with benzyne. This procedure is especially suitable for the synthesis of acid sensitive olefins and has been used in oligoisoprene synthesis (G.M. Blackburn, 1969). [Pg.39]

X-ray crystal structure, 6, 516 Benzophenanthridines synthesis from anils, 2, 416 Benzophenanthridines, tetrahydro-synthesis, 2, 469 Benzo[c]phenanthridines synthesis, 2, 414 from aryl isocyanides, 2, 411 from benzynes, 2, 432 Benzo[i]phenanthridines synthesis, 2, 414 Benzophenanthridinones... [Pg.550]

Benzylamine, o-chloro-N-(cyanomethyl)-N-methyl-isoindole synthesis from, 4, 323 Benzylisoquinoline alkaloids synthesis, 1, 446 Benzynes... [Pg.567]

Pomerantz synthesis, 2, 429 synthesis, 2, 413 from benzynes, 2, 432 Isoquinoline, 1,2,3,4-tetrahydro-mass spectrometry... [Pg.679]

Compounds of special interest whose preparation is described include 1,2,3-benzothiadiazole 1,1-dioxide (a benzyne precursor under exceptionally mild conditions), bis(l,3-diphenylimida-zolidinylidene-2) (whose chemistry is quite remarkable), 6- di-melhylamino)julvene (a useful intermediate for fused-ring non-benzenoid aromatic compounds), dipkenylcyclopropenone (the synthesis of which is a milestone in theoretical organic chemistry), ketene di(2-melhoxyethyl) acetal (the easiest ketene acetal to prepare), 2-methylcyclopenlane-l,3-dione (a useful intermediate in steroid synthesis), and 2-phenyl-5-oxazolone (an important intermediate in amino acid chemistry). [Pg.145]

Although benzobarrelene has been used in a number of recent studies, the best available published synthesis" starts with the Diels-Alder reaction of j8-naphthol and maleic anhydride, affording benzobarrelene in ca. 1% yield after five further steps. Minor improvements allow small quantities of benzobarrelene to be prepared in an overall yield of ca. 10%. The reaction of benzyne with benzene is relatively inefficient, giving benzobarrelene in ca. 2% yield. When benzyne is generated by decomposition of benzenediazonium-2-carboxylate at high dilution in benzene, the yield of benzobarrelene is raised to 14%. The reactions of benzyne with other aromatic substrates are equally inefficient. [Pg.39]

The following intermediates in the synthesis of naturally occurring materials have been synthesized by reactions based on a benzyne intermediate. The benzyne precursor is shown. By retrosynthetic analysis identify an appropriate co-reactant that would form the desired compound. [Pg.1061]

A mixture of sodamide, bromoanisole, and l-methoxy-2-methyl-l-(trimethylsilyl-oxy)-l-butene were reacted at room temperature at a 50 millimolar scale. After some two horns, with slight emission of ammonia, the reaction suddenly became exothermic, with violent gas emission and on one occasion a fire. This was a modest scale-up of a literature procedure for synthesis of 2-alky lbenzoic acids, via a benzyne intermediate. It is advised that this reaction be employed only on smaller scale, with safety precautions. The reaction must pass through a benzocyclobutane intermediate, this, or another, high energy species might accumulate and then decompose. [Pg.1619]

Benzynes are highly strained molecules, which are recognized as useful intermediates in organic synthesis.44 They can be isolated by coordination to transition metals.45 Similar to the reaction of the cyclohexyne species 66, Ni-benzyne complex such as 85 reacted with C02 to give the corresponding five-membered oxanickelacyle complex 86 (Scheme 31).46... [Pg.548]

Synthesis of Functionalized Indole- and Benzo-Fused Heterocyclic Derivatives through Anionic Benzyne Cyclization... [Pg.1]

Abstract The development of a new method for the regioselective synthesis of functionalized indoles and six-membered benzo-fused N-, O-, and S-heterocycles is reported. The key step involves the generation of a benzyne-tethered vinyl or... [Pg.1]

Scheme 4. Anionic cyclization of benzyne-tethered organolithiums from 2-chloroanilines 12 and 15. Synthesis of the serotonin analogue 16.i) fBuLi (3.3 equiv), THF, -110 20°C ii) H20, -78 20°C iii) CH2N+Me2I, THF, 67 °C. Scheme 4. Anionic cyclization of benzyne-tethered organolithiums from 2-chloroanilines 12 and 15. Synthesis of the serotonin analogue 16.i) fBuLi (3.3 equiv), THF, -110 20°C ii) H20, -78 20°C iii) CH2N+Me2I, THF, 67 °C.
Various organolithium intermediates may be posmlated for the synthesis of functionalized indoles and other heterocyclic compounds, from substituted Af-allylanilines (331a-c) or the cychc analog 332, on treatment with f-BuLi. For example, in equation 81 intermediate 333, derived from 331a, was quenched with deuterium oxide. Participation of benzyne metallated intermediates, such as 334, derived from 332, is surmised in equation 82 and other processes. The products of equations 81 and 82 can be characterized by H and NMR spectra . [Pg.398]

Yoshida et al. [63] applied microreaction technology for the sequential synthesis and the disubstitution of o-bromophenyUithiuni (Scheme 28). Lithiation of o-dibromobenzene in batch leads to the formation of the highly reactive benzyne and to the further creation of various side products thus this reaction needs to be conducted at 100°C and below to avoid this problem. This reaction was optimized under microreactor conditions for the production of o-bromophenyUithium and for its further reaction with methanol to determine the yield of bromobenzene. Microreactors were set up of stainless steel tubes with an internal diameter of 250-1,000 pm. [Pg.182]

A C2gH,4 hydrocarbon was recently prepared, also by flash vacuum pyrolysis. This interesting reaction, which may involve a benzyne type intermediate, represents the first synthesis of a benzocorannulene. ... [Pg.14]

The method described is that of Hampton, Harris, and Hauser6 and is an improvement over the benzyne method, which gives poor yields.6,7 This /J-diketone has been prepared by Claisen condensation of ethyl phenylacetate with acetone,8 but the yield is poorer and the product has been shown by gas chromatography to be impure.6 The j8-diketone has also been prepared by the hydrolysis of 4-methoxy-5-phenyl-3-penten-2-one and by hydrolysis and decarboxylation of ethyl a-acetyl-/3-oxo-y-phenylbutyrate10 but these compounds are more difficult to obtain than the starting materials used in the present synthesis. [Pg.149]

Dibenzopyrrocolines have been prepared by intramolecular addition of benzyne intermediates and by nucleophilic substitutions, as shown in Scheme 6 with the synthesis of ( )-cryptowoline (2) and the related dehydro base 39 by Bennington and Morin (7). ( )-6 -Bromotetrahydroisoquinoline 37, prepared by standard procedures, when heated with copper powder in dimethylformamide afforded dibenzopyrrocoline 38 in low yield, and 39 was formed when 37 was allowed to react with potassium amide in liquid ammonia. Compound 39 was converted to ( )-cryptowoline iodide (2) by hydrogenolysis of O-benzyl ether 39 and quartemization with methyl iodide. [Pg.111]


See other pages where Benzynes synthesis is mentioned: [Pg.350]    [Pg.350]    [Pg.81]    [Pg.145]    [Pg.510]    [Pg.678]    [Pg.781]    [Pg.815]    [Pg.4]    [Pg.512]    [Pg.515]    [Pg.519]    [Pg.519]    [Pg.80]    [Pg.92]    [Pg.502]    [Pg.207]    [Pg.323]    [Pg.1]    [Pg.2]    [Pg.5]    [Pg.5]    [Pg.103]    [Pg.47]    [Pg.101]    [Pg.111]   
See also in sourсe #XX -- [ Pg.7 , Pg.743 ]




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Benzyne synthesis

Benzyne synthesis

Benzynes alkaloid synthesis using

Some syntheses via benzyne intermediates

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