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Stereo specific

Dehydrohalogenation of the diastereomenc forms of 1 chloro 1 2 diphenylpropane is stereo specific One diastereomer yields (E) 1 2 diphenylpropene and the other yields the Z isomer Which diastereomer yields which alkene" Why" ... [Pg.469]

Methylene transfer from lodo methylzinc iodide converts alkenes to cyclopropanes The reaction is a stereo specific syn addition of a CH2 group to the double bond... [Pg.617]

The reaction is easy to carry out and yields are usually high Epoxidation is a stereo specific syn addition... [Pg.676]

A method for achieving net anti hydroxylation of alkenes combines two stereo specific processes epoxidation of the double bond and hydrolysis of the derived epoxide... [Pg.683]

Select reaction conditions that would allow you to carry out each of the following stereo specific transformations... [Pg.697]

The early chemistry leading to these derivatives was originally carried out via the 6a-(methylthio) derivative (17) which was prepared by way of a Schiff s base (39). The 6a-thiomethyl group could then be displaced by various nucleophiles giving rise to 6a-methoxy or other 6a-substituted penicillins. A stereo-specific one-step introduction of a methoxy group at C-6 in penicillins provided a simple entry to 6a-methoxy penicillins (40) in yields ranging from 50—62%. [Pg.79]

The stereochemistry of both chlorination and bromination of several cyclic and acyclic dienes has been determined. The results show that bromination is often stereo-specifically anti for the 1,2-addition process, whereas syn addition is preferred for 1,4-addition. Comparable results for chlorination show much less stereospeciftcity. It appears that chlorination proceeds primarily through ion-pair intermediates, whereas in bromina-hon a stereospecific anfi-l,2-addition may compete with a process involving a carbocation mtermediate. The latter can presumably give syn or anti product. [Pg.369]

The next major commodity plastic worth discussing is polypropylene. Polypropylene is a thermoplastic, crystalline resin. Its production technology is based on Ziegler s discovery in 1953 of metal alkyl-transition metal halide olefin polymerization catalysts. These are heterogeneous coordination systems that produce resin by stereo specific polymerization of propylene. Stereoregular polymers characteristically have monomeric units arranged in orderly periodic steric configuration. [Pg.237]

Fatty acids with odd numbers of carbon atoms are rare in mammals, but fairly common in plants and marine organisms. Humans and animals whose diets include these food sources metabolize odd-carbon fatty acids via the /3-oxida-tion pathway. The final product of /3-oxidation in this case is the 3-carbon pro-pionyl-CoA instead of acetyl-CoA. Three specialized enzymes then carry out the reactions that convert propionyl-CoA to succinyl-CoA, a TCA cycle intermediate. (Because propionyl-CoA is a degradation product of methionine, valine, and isoleucine, this sequence of reactions is also important in amino acid catabolism, as we shall see in Chapter 26.) The pathway involves an initial carboxylation at the a-carbon of propionyl-CoA to produce D-methylmalonyl-CoA (Figure 24.19). The reaction is catalyzed by a biotin-dependent enzyme, propionyl-CoA carboxylase. The mechanism involves ATP-driven carboxylation of biotin at Nj, followed by nucleophilic attack by the a-carbanion of propi-onyl-CoA in a stereo-specific manner. [Pg.791]

Furthermore, a neighboring group participadon of a phenylthio funcdon is observed in the Lewis acid-catalyzed nucleophiEc subsdnidon reacdon of various fi-nitrosulfides. Because the fi-nitrosulfides are readily available, by the Michael addidon of thiols to nitroalkenes fsee Michael addidon Chapter 4, this reacdon is very useful. The fi-nitrosulfides are prepared stereoselecdvely, and the reacdon proceeds in a stereo-specific way fretendonof configiuadoni as shown in Eqs. 31 -34. [Pg.190]

The above explains the key roles of (a) the nucleophilicity of the nucleophile (b) the substituent(s) (c) the polarity of the reaction medium and (d) the the bulkiness of the nucleophile, in determining the regio- and stereo-specificity of the reaction. The reaction of alkyl chloromethyl ethers with thiirane oxides to give sulfenic esters128 appears to be mechanistically analogous. [Pg.424]

The diion mechanism c has been reported for at least some of the reae-tions in categories 3 and as well as some ketene dimerizations. For example, the rate of the reaction between l,2-bis(trifluoromethyl)-l,2-dicyanoe-thene and ethyl vinyl ether was strongly influenced by changes in solvent polarity.Some of these reactions are nonstereospecific, but others are stereo-specific. As previously indicated, it is likely that in the latter cases the di-ionic... [Pg.1080]

Other reactions leading to azetidines include the dialkylation of chromium or tungsten complexes of aminocarbenes with 1,3-diiodopropane under phase-transfer conditions <96CL827> and the regio- and stereo-specific reaction of dimethylsulfoniumethoxy-carbonylmethylide with 2-substituted or 2,3-disubstituted N-arylsulfonylaziridines to afford S (R 7 H, = H) or 5 (R and R H) respectively, generally in useful yields <95JCS(P1)2605>. [Pg.65]

It was also of interest to apply such lOOC reactions to formation of carbocyclic rings. Oxime olefins 230 a-e, formed in good yield via reaction of 229 with 0-silyl-a-bromoaldoximes 228 in the presence of F ions, cyclized in a sealed tube at 190 °C to provide 231 a-e (Eq. 24, Table 22) [63]. Reduction of 231a provided amino alcohol 232 a in 68% yield. Amino alcohol 232 e was converted stereo-specifically to the fused -lactam 233. [Pg.34]

The 10 OC route was followed for the synthesis of tetrahydrofurans possessing a y-amino alcohol moiety 247 (Eq. 29) 118]. Aldoximes 21a-f (see also Eq. 3 and Table 2), when heated in benzene in a sealed tube at 110 -120 °C for 6 h, underwent smooth intramolecular cycloaddition to the tetrahydrofuranoisoxazo-lidines 246a-f in 70-83% yield (Eq. 29). This ring closure proceeded stereo-specifically to generate three adjacent stereogenic centers. LAH reduction of 246 b resulted in isolation of stereospecifically functionalized tetrahydrofuran derivative 247b in 75% yield. [Pg.36]

Problem Two of the following reactions are stereo-specific and one is stereoselective explain which is which and account for the results. [Pg.120]

Some insect pheromones are internal ketals. We have already mentioned multistriatin (pp T 2 and 99) and frontalin p 193). Brevicomin (22) is another example. Disconnection of the ketal gives (23) containing a 1,2-diol. Among other syntheses, hydroxy-lation of protected enone (24) by epoxidation and acid catalysed rearrangement gives brevicomin stereo-specifically,... [Pg.261]

Plant apocarotenoids have a wide variety of structures and functions. As expected, there is a small gene family of CCDs with different cleavage sites and somewhat promiscuous substrate selection. Some CCDs are stereo-specific, for example, 9-cis epoxycarotenoids are the substrates for NCEDs (9-cis expoxy dioxygenases) that produce the precursor of ABA biosynthesis, xanthoxin. Both linear carotenoids (lycopene) and cyclic carotenoids are substrates for cleavage at various double bonds including the central 15-15 and eccentric 5-6, 7-8, 9-10, 9 -10, and 11-12 bonds. Some CCDs cleave both linear and cyclic carotenoids and may cleave the same molecule twice, e.g., both 9-10 and 9 -10 positions. [Pg.370]

The success of the above alkylation and acylations, without obtaining ring-opening products , extends the usefulness of this method particularly when the anion 323 is being used in a regio- and stereo-specific manner . Thus, the combination of direct alkylation and thermal extrusion of sulfur dioxide provides an ideal route for the preparation of terminally substituted conjugated dienes. [Pg.464]

Both alkenyl disiamylboranes and B-alkenylcatecholboranes also couple stereo-specifically with alkenyl bromides.224... [Pg.741]

Shannon 1983). and PCP-mimetic activity is exhibited stereo -specifically by the dextro isomer (Brady et al. 1982). [Pg.153]

To understand the interdependence of the creation of the two chiral centers relative to each other and to the sulfoxide, monosubstituted vinyl sulfoxides (S)-53 and (S)-54 were prepared and reduced with BH3-THF under the same conditions (Scheme 5.19). Both the 2- and 3-phenyl substituted substrates gave the chiral products 54 and 55 with complete stereo specificities dictated by the configuration of the starting sulfoxides. These results again were unexpected and indicated that both hydrogens were delivered solely directed by the chiral sulfoxide. This was not consistent with the mechanism in which the chirality of the initially formed chiral center at the 3-postion dictates the chirality of the subsequently formed chiral center at the 2-position. [Pg.159]

Elving, Rosenthal, Hayes and Martin 41> studied the electrochemical reduction of bromofumaric acid(27) and bromomaleic acid(28)in aqueous solution over a wide pH range. It was claimed that reduction of 27 proceeds stereo-specifically to fumaric acid, and that reduction of 28 affords mixtures of maleic and fumaric acids. Because of the polar and hydrogen-bonding properties of the carboxyl groups in 27 and 28, the relation of these results to those of Fry and Mitnick l6) is unclear. [Pg.16]


See other pages where Stereo specific is mentioned: [Pg.213]    [Pg.61]    [Pg.71]    [Pg.85]    [Pg.140]    [Pg.130]    [Pg.330]    [Pg.656]    [Pg.210]    [Pg.211]    [Pg.102]    [Pg.179]    [Pg.331]    [Pg.62]    [Pg.464]    [Pg.737]    [Pg.329]    [Pg.539]    [Pg.797]    [Pg.1343]    [Pg.290]    [Pg.374]    [Pg.157]    [Pg.202]    [Pg.48]   
See also in sourсe #XX -- [ Pg.354 , Pg.366 ]

See also in sourсe #XX -- [ Pg.354 , Pg.366 ]




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Alcohol stereo specificity

Stereo specific halogenation

Stereo specificity

Stereo specificity

Stereo-specific addition

Stereo-specific catalysts

Stereo-specific polymerization

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