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Addition reactions intramolecular

Intramolecular Michael Addition 5-exo-tet favored Organic Reactions 1995, 47, 315-552... [Pg.139]

Intramolecular reaction can be used for polycyclization reaction[275]. In the so-called Pd-catalyzed cascade carbopalladation of the polyalkenyne 392, the first step is the oxidative addition to alkenyl iodide. Then the intramolecular alkyne insertion takes place twice, followed by the alkene insertion twice. The last step is the elimination of/3-hydrogen. In this way, the steroid skeleton 393 is constructed from the linear diynetriene 392(276]. [Pg.181]

In the presence of a double bond at a suitable position, the CO insertion is followed by alkene insertion. In the intramolecular reaction of 552, different products, 553 and 554, are obtained by the use of diflerent catalytic spe-cies[408,409]. Pd(dba)2 in the absence of Ph,P affords 554. PdCl2(Ph3P)3 affords the spiro p-keto ester 553. The carbonylation of o-methallylbenzyl chloride (555) produced the benzoannulated enol lactone 556 by CO, alkene. and CO insertions. In addition, the cyclobutanone derivative 558 was obtained as a byproduct via the cycloaddition of the ketene intermediate 557[4I0]. Another type of intramolecular enone formation is used for the formation of the heterocyclic compounds 559[4l I]. The carbonylation of the I-iodo-1,4-diene 560 produces the cyclopentenone 561 by CO. alkene. and CO insertions[409,4l2]. [Pg.204]

No intennolecular reaction of malonate or /3-keto esters with halides has been reported, but the intramolecular reaction of /3-diketones such as 790 and malonates proceeds smoothly[652,653]. Even the simple ketone 791 can be arylated or alkenylated intramolecularly. In this reaction, slow addition of a base is important to prevent alkyne formation from the vinyl iodide by elim-ination[654]. [Pg.245]

The reverse reaction (formation of metal alkyls by addition of alkenes to M-H) is the basis of several important catalytic reactions such as alkene hydrogenation, hydroformylation, hydroboration, and isomerization. A good example of decomposition by y3-elimination is the first-order intramolecular reaction ... [Pg.926]

Reaction of tryptamine with simple ketones has not been widely explored. Acetone in the presence of benzoyl chloride has been reported to yield 2-benzoyl-1,1 -dimethyl-1,2,3,4-tetrahydro-j8-carbo-line. That the keto group is much less reactive than the aldehyde group is indicated by the fact that j8-keto aldehydes, in the form of their acetals or sodium salts, react with tryptamine at the aldehyde function to yield the conjugated enamine 24, which undergoes ring closure via an intramolecular Michael addition. The potentialities of this interesting modification of the Pictet-Spengler reaction have not yet been fuUy explored. [Pg.88]

Ring-chain tautomerism via intramolecular reversible addition reactions to the C=0 group 95AHC(64)251. [Pg.205]

A sequence of straightforward functional group interconversions leads from 17 back to compound 20 via 18 and 19. In the synthetic direction, a base-induced intramolecular Michael addition reaction could create a new six-membered ring and two stereogenic centers. The transformation of intermediate 20 to 19 would likely be stereoselective substrate structural features inherent in 20 should control the stereochemical course of the intramolecular Michael addition reaction. Retrosynthetic disassembly of 20 by cleavage of the indicated bond provides precursors 21 and 22. In the forward sense, acylation of the nitrogen atom in 22 with the acid chloride 21 could afford amide 20. [Pg.103]

Scheme 20. The intramolecular carbonyl addition reaction used by Danishefsky and coworkers to construct a 10-membered ring enediyne system. Scheme 20. The intramolecular carbonyl addition reaction used by Danishefsky and coworkers to construct a 10-membered ring enediyne system.
The intramolecular Michael addition11 of a nucleophilic oxygen to an a,/ -unsaturated ester constitutes an attractive alternative strategy for the synthesis of the pyran nucleus, a strategy that could conceivably be applied to the brevetoxin problem (see Scheme 2). For example, treatment of hydroxy a,/ -unsaturated ester 9 with sodium hydride furnishes an alkoxide ion that induces ring formation by attacking the electrophilic //-carbon of the unsaturated ester moiety. This base-induced intramolecular Michael addition reaction is a reversible process, and it ultimately affords the thermodynamically most stable product 10 (92% yield). [Pg.734]

It will be recalled that one of the key operations in the synthesis of IJK ring system 86 is the intramolecular conjugate addition reaction (see 90—>89, Scheme 17b) to form ring J. In the context of compound 90, the electrophilic a,/ -unsaturated ester moiety and the potentially nucleophilic tertiary hydroxyl group reside in proximal regions of space, a circumstance that would seem to favor the desired cyclization evept (see Scheme 19). Indeed, exposure of a solution of 90 in THFto sodium hydride (1 equiv.) for one hour at 25 °C results in the formation of compound 89 in 92% yield. In... [Pg.764]

For reactions of A-acyliminium ions with alkenes and alkynes one has to distinguish between A-acyliminium ions locked in an s-trans conformation and those which (can) adopt an s-cis conformation. The former type reacts as a (nitrogen stabilized) carbocation with a C —C multiple bond. Although there are some exceptions, the intramolecular reaction of this type is regarded as an anti addition to the 7t-nucleophile, with (nearly) synchronous bond formation, the conformation of the transition state determining the product configuration. [Pg.803]

The intramolecular Michael addition of acyclic systems is often hampered by competing reactions, i.e., aldol condensations. With the proper choice of Michael donor and acceptor, the intramolecular addition provides a route to tram-substituted cyclopentanones, and cyclopentane and cyclohexane derivatives. Representative examples are the cyclizations of /3-oxo ester substituted enones and a,/J-unsaturated esters. [Pg.968]

An interesting approach to zr n.v-2,3-disubstituted cyeloalkanones is offered by auxiliary controlled intramolecular Michael additions. The diastereoselectivity depends on the chiral alcohol used193> l94. When the borneol derivative 7 was used as substrate, a single diastereomer of 8 resulted when the reaction was performed at 25 "C under thermodynamic control with a catalytic amount of sodium hydride in benzene. [Pg.974]

The reactions of the lithium enolates of substituted 2-cyclohexenones and 2-cyclopentenones with ( )-l-nitropropene give a mixture of syn- and ami-products3. The lithium enolate of 3,5,5-trimethyl-2-cyclohexenone gives a mixture of the syn- and //-3.5,5-trimethyl-6-(l-methyl-2-nitroethyl)-2-cyclohexcnoncs in modest diastereoselection when the reaction mixture is quenched with acetic acid after. 30 minutes at —78 =C. When the reaction mixture is heated to reflux, tricyclic products are obtained resulting from intramolecular Michael addition of the intermediate nitronate ion to the enone moiety. [Pg.1012]

The initiating step of the photolysis reaction is the removal of a CO ligand from the metal with generation of a reactive 16e species. The intermediate metal complex is stabilized by an intramolecular oxidative addition of the Si—H bond to the iron center. [Pg.38]


See other pages where Addition reactions intramolecular is mentioned: [Pg.2]    [Pg.2]    [Pg.23]    [Pg.261]    [Pg.171]    [Pg.491]    [Pg.543]    [Pg.511]    [Pg.79]    [Pg.213]    [Pg.287]    [Pg.22]    [Pg.38]    [Pg.105]    [Pg.382]    [Pg.392]    [Pg.528]    [Pg.553]    [Pg.556]    [Pg.752]    [Pg.755]    [Pg.759]    [Pg.759]    [Pg.777]    [Pg.489]    [Pg.346]    [Pg.991]   
See also in sourсe #XX -- [ Pg.89 ]

See also in sourсe #XX -- [ Pg.56 , Pg.108 ]




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Addition reactions (continued intramolecular

Anti addition reactions intramolecular cyclization

Butyric acid, 2-amino-4-phosphonosynthesis via intramolecular ester enolate addition reactions

Chromium, allylic intramolecular addition reactions

Cyclization by Intramolecular Addition Reactions

Cyclization reactions intramolecular addition

Intramolecular addition

Intramolecular addition reactions Magnesium

Intramolecular addition reactions Samarium iodide

Intramolecular addition reactions Titanium chloride

Intramolecular addition reactions amines, direct irradiation

Intramolecular addition reactions exciplex fluorescence

Intramolecular addition reactions indolines

Intramolecular addition reactions introduction

Intramolecular addition reactions methanol

Intramolecular addition reactions phenanthrenes

Intramolecular addition reactions stilbenes

Intramolecular addition reactions styrene

Intramolecular addition reactions tetrahydroquinolines

Intramolecular addition reactions, zinc enolates

Intramolecular processes addition reactions

Intramolecular reactions double bond additions

Intramolecular reactions homolytic additions

Intramolecular reversible addition reaction

Intramolecular, addition Baylis-Hillman reaction

Intramolecular, addition Diels-Alder reactions

Intramolecular, addition Grignard reactions

Intramolecular, addition Paterno-Buchi reaction

Intramolecular, addition Schmidt reaction

Intramolecular, addition Thorpe reaction

Intramolecular, addition Wittig reaction

Intramolecular, addition aldol reaction

Intramolecular, addition aldol reaction, acid

Michael addition intramolecular reaction

Phosphinothricin via intramolecular ester enolate addition reactions

Reactions Related to Free Radical Intramolecular Additions

Silanes, vinylcyclization reactions intramolecular addition

Substitution, Addition and Intramolecular Reactions

Tautomeric intramolecular reversible addition reaction

Tsuji-Trost reaction intramolecular addition

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