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Intramolecular asymmetric

Application of this catalytic process was extended to asymmetric intramolecular Diels-Alder reactions. Synthetically useful intermediates with octalin and decalin skeletons were obtained in high optical purity by use of a catalytic amount of the chiral titanium reagent [45] (Scheme 1.57, Table 1.25). The core part of the mevi-nic acids was enantioselectively synthesized by use of this asymmetric intramolecular reaction [46] (Scheme 1.58). [Pg.37]

Table 1.25 Asymmetric intramolecular Diels-Alder reactions catalyzed by 31 [45 ... Table 1.25 Asymmetric intramolecular Diels-Alder reactions catalyzed by 31 [45 ...
Phenol, Oms-2-(2-butenyl)-asymmetric intramolecular oxidative cyclization, 6,365 Phenol, 4-cyano-hydrolysis... [Pg.192]

Scheme 12.22 Asymmetric intramolecular cross-benzoin reactions... Scheme 12.22 Asymmetric intramolecular cross-benzoin reactions...
Suzuki and co-workers recently applied the asymmetric intramolecular benzoin reaction to the synthesis of the homoisoflavonoid (-F)-sappanone B 122 [54]. The authors found that triazolium salt pre-catalyst 120 gave the best results for the... [Pg.275]

The first asymmetric intramolecular Stetter reactions were reported by Enders and co-workers utilising triazolium salt pre-catalyst 125. Treatment of substrate 123 generated 1,4-dicarbonyl compound 124 in good yield and enantioselectivity [56]. These salicylaldehyde-derived substrates 123 have since become the standard test substrates for the development of new catalysts for the asymmetric intramolecular Stetter reaction. Bach and co-workers have achieved moderate enantioselectivities using axially-chiral thiazolium pre-catalyst 126 [41], whilst Miller and co-workers have developed peptidic thiazolium pre-catalyst 127 [57]. In 2005, Rovis and coworkers showed that the NHCs derived from triazolium salts 128-130 were excellent catalysts for the asymmetric intramolecular Stetter reaction of a wide range of substrates, giving typically excellent yields and enantioselectivities [58]. The iV-pentafluorophenyl catalyst 129 currently represents the state of the art in asymmetric Stetter reactions (Scheme 12.24) [59]. [Pg.276]

Scheme 12.25 Scope of the asymmetric intramolecular Stetter reaction... Scheme 12.25 Scope of the asymmetric intramolecular Stetter reaction...
Scheme 12.26 Asymmetric intramolecular Stetter reactions with aliphatic aldehydes... Scheme 12.26 Asymmetric intramolecular Stetter reactions with aliphatic aldehydes...
Rovis and co-workers have applied the asymmetric intramolecular Stetter reaction to the desymmetrisation of cyclohexadienones 140, generating a quaternary stereocentre and forming hydrobenzofuranones 141 in excellent yields and enantiose-lectivities. Substitution at the two, four and six-positions is tolerated, and even substitution at the three-position is accommodated (Scheme 12.29) [65]. [Pg.279]

In recent years, the variety of useful diazo substrates for asymmetric intramolecular cyclopropanation processes has really expanded. As another example, Charette and Wurz have reported the first example of an intramolecular cyclopropanation involving a-nitro-a-diazo carbonyl compounds.This reaction, catalysed by Rh2[(S)-DOSP]4, led to the formation of nine-membered nitrocyclopropyl lactones in good yields and enantioselectivities with extremely high diastereoselectivities (Scheme 6.17). This novel methodology constituted an efficient entry into chiral functionalised macrocyclic-fused cyclopropane oc-amino acids. [Pg.221]

McKervey and Ye have developed chiral sulfur-containing dirhodium car-boxylates that have been subsequently employed as catalysts for asymmetric intramolecular C-H insertion reactions of y-alkoxy-ot-diazo-p-keto esters. These reactions produced the corresponding ci -2,5-disubstituted-3(2H)-furanones with diastereoselectivities of up to 47% de. Moreover, when a chiral y-alkoxy-a-diazo-p-keto ester containing the menthyl group as a chiral auxiliary was combined with rhodium(II) benzenesulfoneprolinate catalyst, a considerable diastereoselectivity enhancement was achieved with the de value being more than 60% (Scheme 10.74). [Pg.352]

Methods for the enantioselective synthesis of 3-substituted indolines by means of the asymmetric intramolecular carbolithiation of 2-bromo-A,-allylanilines in the presence of (-)-sparteine were reported simultaneously by Bailey <00JA6787> and Groth <00JA6789>. Thus, addition of 89 to 2.2 equiv of /BuLi in the presence of the chiral ligand generates the lithium intermediate 90 which upon quenching with methanol affords the chiral indoline 91 in a process that is highly solvent dependent. [Pg.118]

Chan has discovered a completely atropdiasteroselective synthesis of a biaryl diphosphine by asymmetric intramolecular Ullmann coupling or Fe(m)-promoted oxidative coupling. A chiral atropisomeric biaryl bisphosphine ligand 2 was synthesized through this central-to-axial chirality transfer.38 Recently, a xylyl-biaryl bisphosphine ligand, Xyl-TetraPHEMP, was introduced by Moran, and is found to be effective for the Ru-catalyzed hydrogenation of aryl ketone.39... [Pg.4]

Intramolecular C-H insertion reactions of metal carbenoids have been widely used for the stereoselective construction of substituted lactams, lactones, cyclopentanones, benzofurans, and benzopyrans. Several excellent reviews have been published covering the general aspects of intramolecular C-H insertion by metal carbenoids.46,47 62 71 99-104 The following section highlights the major advances made since 1994, especially in asymmetric intramolecular C-H insertion. [Pg.181]

Asymmetric intramolecular bis-silylation has been achieved by using optically active isocyanide as chiral ligands on palladium (Equation (36)).107... [Pg.740]

Asymmetric intramolecular Michael cyclization.1 Reaction of the ketone 2 with (R)-( + )-l (1 equiv.) generates an enatnine that adds to the unsaturated ester group to give 3a. The yield and the ee of 3 are markedly improved when 5 A... [Pg.257]

Asymmetric intramolecular Reformatsky reactions/ The bromoacetates (1) of (3-hydroxy ketones undergo a Reformatsky-type reaction when treated with Sml2 to give (3-hydroxy-8-valerolactones (2). These products are useful in their own... [Pg.277]

Scheme 3.22 Rhodium-catalyzed asymmetric intramolecular conjugate addition-aldol reaction [40],... Scheme 3.22 Rhodium-catalyzed asymmetric intramolecular conjugate addition-aldol reaction [40],...
Scheme 6.141 Mechanistic proposal for the 121-catalyzed asymmetric intramolecular Michael addition exemplified for the model substrates ( )-4-hydroxy-l-phenyl-2-buten-l-one (n = 0) and ( )-5-hydroxy-l-phenyl-2-buten-l-one (n = 1) 121 functions as push/pull-type bifunctional catalyst inducing the cyclization of boronic acid hemiester (1) to form intermediate (2) release ofdiol product (3) by oxidation. Scheme 6.141 Mechanistic proposal for the 121-catalyzed asymmetric intramolecular Michael addition exemplified for the model substrates ( )-4-hydroxy-l-phenyl-2-buten-l-one (n = 0) and ( )-5-hydroxy-l-phenyl-2-buten-l-one (n = 1) 121 functions as push/pull-type bifunctional catalyst inducing the cyclization of boronic acid hemiester (1) to form intermediate (2) release ofdiol product (3) by oxidation.
Scheme 6.142 Product range of the catalyzed asymmetric intramolecular Michael addition of y-hydroxy-a,P-enones catalyzed by 121. Scheme 6.142 Product range of the catalyzed asymmetric intramolecular Michael addition of y-hydroxy-a,P-enones catalyzed by 121.
The efficient asymmetric intramolecular aldolization of certain triketones with a reflective symmetry axis using chiral amino acid catalysts has been reported with a view at obtaining optically active steroids. [Pg.176]

Cationic Rh(I) catalysts containing (/ ,/ )-i-Pr-DuPHOS promote asymmetric intramolecular hydrosilylation of certain a-siloxy ketones with high selectivity (Scheme 8) (25). Reaction of 4-dimethylsiloxy-2-butanone produces an (/ )-l,3-[Pg.74]

In intramolecular cyclopropanation, Doyle s catalysts (159) show outstanding capabilities for enantiocontrol in the cyclization of allyl and homoallyl diazoesters to bicyclic y-and <5-lactones, respectively (equations 137 and 138)198 205. The data also reveal that intramolecular cyclopropanation of Z-alkenes is generally more enantioselective than that of E-alkenes in bicyclic y-lactone formation198. Both Rh(II)-MEPY enantiomers are available and, through their use, enantiomeric products are accessible. In a few selected cases, the Pfaltz catalyst 156 also results in high-level enandoselectivity in intramolecular cyclopropanation (equation 139)194. On the other hand, the Aratani catalyst is less effective than the Doyle catalyst (159) or Pfaltz catalyst (156) in asymmetric intramolecular cyclo-propanations201. In addition, the bis-oxazoline-derived copper catalyst 157b shows lower enantioselectivity in the intramolecular cyclopropanation of allyl diazomalonate (equation 140)206. [Pg.701]

In fact, the role of copper and oxygen in the Wacker Process is certainly more complicated than indicated in equations (151) and (152) and in Scheme 10, and could be similar to that previously discussed for the rhodium/copper-catalyzed ketonization of terminal alkenes. Hosokawa and coworkers have recently studied the Wacker-type asymmetric intramolecular oxidative cyclization of irons-2-(2-butenyl)phenol (132) by 02 in the presence of (+)-(3,2,10-i -pinene)palladium(II) acetate (133) and Cu(OAc)2 (equation 156).413 It has been shown that the chiral pinanyl ligand is retained by palladium throughout the reaction, and therefore it is suggested that the active catalyst consists of copper and palladium linked by an acetate bridge. The role of copper would be to act as an oxygen carrier capable of rapidly reoxidizing palladium hydride into a hydroperoxide species (equation 157).413 Such a process is also likely to occur in the palladium-catalyzed acetoxylation of alkenes (see Section 61.3.4.3). [Pg.365]

Hartwig has reported the asymmetric intramolecular arylation of amides using a chiral carbene ligand (5) with up to 76% ee [43]. [Pg.167]


See other pages where Intramolecular asymmetric is mentioned: [Pg.437]    [Pg.207]    [Pg.370]    [Pg.1086]    [Pg.275]    [Pg.277]    [Pg.86]    [Pg.87]    [Pg.207]    [Pg.246]    [Pg.251]    [Pg.201]    [Pg.815]    [Pg.832]    [Pg.136]    [Pg.329]    [Pg.312]    [Pg.280]    [Pg.850]    [Pg.696]    [Pg.74]    [Pg.122]   
See also in sourсe #XX -- [ Pg.85 , Pg.86 , Pg.321 ]

See also in sourсe #XX -- [ Pg.16 , Pg.19 , Pg.125 , Pg.486 ]

See also in sourсe #XX -- [ Pg.1172 ]




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Alkylation asymmetric intramolecular

Asymmetric Intramolecular Arylations

Asymmetric hydrolysis intramolecular

Asymmetric hydrosilylation intramolecular

Asymmetric induction in intramolecular

Asymmetric intramolecular 1,3-migration

Asymmetric intramolecular aldol reaction

Asymmetric intramolecular anionic cyclization

Asymmetric intramolecular carbolithiation

Asymmetric reactions intramolecular

Asymmetric reactions intramolecular carbopalladation

Chiral auxiliaries, diastereoselectivity, asymmetric intramolecular cycloadditions

Cyclopentadiene, asymmetric intramolecular

Diels-Alder reactions asymmetric intramolecular

Heck reaction intramolecular asymmetric

Intramolecular Asymmetric Allylations

Intramolecular Michael reaction asymmetric

Intramolecular absolute asymmetric

Intramolecular absolute asymmetric photoreaction

Intramolecular absolute asymmetric solid state

Intramolecular asymmetric Heck reactions, decalin

Intramolecular asymmetric allylic alkylation

Intramolecular asymmetric induction

Intramolecular asymmetric methods

Intramolecular asymmetric photoreaction

Intramolecular asymmetric photoreaction solid state

Intramolecular asymmetrical

Intramolecular cycloadditions asymmetric reactions, diastereoselectivity

Intramolecular reaction asymmetric hydrosilylation

Intramolecular reactions asymmetric alkylation

Intramolecular reactions asymmetric annulation

Ketones, a-hydroxy intramolecular asymmetric

Nitroaldol reactions tandem inter-intramolecular asymmetric

Oxazolidinones, N-acylchiral intramolecular asymmetric

Stereoselectivity asymmetric reactions, intramolecular

The Asymmetric Intramolecular Mizoroki-Heck Reaction in Natural Product Total Synthesis

Trienes intramolecular asymmetric

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