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Chiral compounds sulfur ylides

The sulfur ylide-mediated epoxidation of aldehydes has been thoroughly investigated [70, 71]. The chiral sulfur ylides reported by Aggarwal have been most broadly applicable, and a catalytic, asymmetric process yielding aromatic transepoxides has been developed [72]. In this process, the sulfur ylides are produced in situ from diazo compounds, generated in turn from tosylhydrazone salts (Scheme 9.15) [73],... [Pg.326]

Sulfur ylides are a classic reagent for the conversion of carbonyl compounds to epoxides. Chiral camphor-derived sulfur ylides have been used in the enantioselective synthesis of epoxy-amides <06JA2105>. Reaction of sulfonium salt 12 with an aldehyde and base provides the epoxide 13 in generally excellent yields. While the yield of the reaction was quite good across a variety of R groups, the enantioselectivity was variable. For example benzaldehyde provides 13 (R = Ph) in 97% ee while isobutyraldehyde provides 13 (R = i-Pr) with only 10% ee. These epoxy amides could be converted to a number of epoxide-opened... [Pg.73]

Chiral compounds (Continued) epoxy alcohols, 141 formulas, xiii xvii hydroxystannanes, 318 liquid crystals, 350 molecular lattics, 347 natural, 1 NMR spectra, 282 olefins, 173 oxetanones, 326 phenols, 287 see also Binaphthol phenylbutenes, 172 protonating agents, 324 sulfoxides, 159 sulfur ylides, 328 synthesis, I... [Pg.193]

The required chiral sulfur ylide of type 59 is formed in a reaction with a diazo compound in the presence of an achiral metal catalyst. Subsequently, asymmetric reaction of the chiral ylide 59 with the C=N double bond of the imine proceeds diastereoselectively and enantioselectively, giving the optically active aziridine 57. The chiral sulfide catalyst released is then used for the next catalytic cycle. The cat-alytically active species in the asymmetric process is the sulfide, so this concept can also be regarded as an organocatalytic reaction. [Pg.119]

The few published attempts at the asymmetric epoxidation of carbonyl compounds with chiral sulfur ylides have been reviewed. Thus far, such processes have not been very useful synthetically. For example, reaction of benzaldehyde with an optically pure sulfoximine ylide only afforded an qioxide in 20% enantiomeric excess. More recently, chiral sulfur methylides have provided tra/i -stilbene oxides in up to 83% ee An example of optical induction observed in reactions t ng place with a chiral phase transfer reagent was reported, but later disputed. ... [Pg.825]

The sulfur ylides 254 used in the stereoselective [2,3]-sigmatropic rearrangement are generated by copper(I)-catalyzed Doyle-Kirmse reaction of aryl sulfides 253 and diazo compounds bearing Oppolzer s camphor sultam auxiliary 252 in the presence of chiral diamine ligand S, S)-259 <05JA15016>. These intermediate ylides undergo spontaneous... [Pg.268]

Chiral epoxides frequently play a key role as intermediates in organic synthesis and the development of methods for the catalytic asymmetric synthesis of such compounds therefore remains an area of intensive research. Methods have focused principally on the asymmetric electrophilic oxidation of alkenes and good enantioselectivity has been achieved [1]. An alternative to oxidative processes for the synthesis of epoxides is the reaction of sulfur ylides with aldehydes and ketones [2,3,4,5,6]. Sulfur ylide epoxidation is a carbon-carbon bond forming reaction and is complementary to oxidative methods. The standard conditions for this reaction utilize the original Corey method treatment of a sulfonium salt with a strong base in the presence of or followed by the addition of an aldehyde... [Pg.649]

In contrast to the use of the specific type of sulfur ylides and related compounds, the employment of readily available alkyl halides for a catalytic Michael-alkylation reaction with enals to produce the corresponding formal [2-1-1] cycloadducts is an extremely challenging task. As an example, Wang [82a] and Cordova [82b, 83a] independently reported the enantioselective organocatalytic reaction of bromoma-lonates 78 and enals, which led to the corresponding cyclopropanes 79. In both cases, chiral diarylprolinol trimethylsilyl ethers 8 and 80 were involved as catalysts, giving access to the corresponding 2-formylcyclopropane derivatives 79 in... [Pg.1116]


See other pages where Chiral compounds sulfur ylides is mentioned: [Pg.8]    [Pg.210]    [Pg.324]    [Pg.808]    [Pg.212]    [Pg.364]    [Pg.65]    [Pg.207]    [Pg.828]    [Pg.828]    [Pg.102]    [Pg.435]    [Pg.656]    [Pg.117]    [Pg.714]    [Pg.437]    [Pg.828]    [Pg.891]    [Pg.58]    [Pg.58]    [Pg.615]    [Pg.27]    [Pg.1115]    [Pg.1115]    [Pg.55]    [Pg.58]    [Pg.36]    [Pg.552]    [Pg.64]    [Pg.22]   
See also in sourсe #XX -- [ Pg.328 ]




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