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Substitution cyclopropanation

The last group of reactions uses ring opening of carbonyl or 1-hydroxyalkyl substituted cyclopropanes, which operate as a -synthons. d -Synthons, e.g. hydroxide or halides, yield 1,4-disubstituted products (E. Wenkert, 1970 A). (1-Hydroxyalkyl)- and (1-haloalkyl)-cyclopropanes are rearranged to homoallylic halides, e.g. in Julia s method of terpene synthesis (M. Julia, 1961, 1974 S.F. Brady, I968 J.P. McCormick, 1975). [Pg.69]

The growing importance of cyclopropane derivatives (A. de Meijere, 1979), as synthetic intermediates originates in the unique, olefin-like properties of this carbocycle. Cyclopropane derivatives with one or two activating groups are easily opened (see. p. 69f.). Some of these reactions are highly regio- and stereoselective (E. Wenkert, 1970 A, B E. J. Corey, 1956 A, B, 1975 see p. 70). Many appropriately substituted cyclopropane derivatives yield 1,4-difunctional compounds under mild nucleophilic or reductive reaction conditions. Such compounds are especially useful in syntheses of cyclopentenone derivatives and of heterocycles (see also sections 1.13.3 and 4.6.4). [Pg.76]

If a bromomethyl- or vinyl-substituted cyclopropane carbon atom bears a hydroxy group, the homoallyiic rearrangement leads preferentially to cyclobutanone derivatives (J. Sa-laun, 1974). Addition of amines to cydopropanone (N. J. Turro, 1966) yields S-lactams after successive treatment with tert-butyl hypochlorite and silver(I) salts (H.H. Wasserman, 1975). For intramolecular cyclopropane formation see section 1.16. [Pg.77]

The photolysis of a-diazosulfones dissolved in alkenes provides sulfonyl-substituted cyclopropanes in high yields. This is exemplified by the preparation of l-(p-methoxyphenylsulfonyl)-2,2,3,3-tetra-methylcyclopropane in 75% yield from -methoxybenzenesulfonyl-diazomethane and 2,3-dimethyl-2-butene. A similar addition to [Pg.101]

In the C NMR spectrum two signals with unusually small shift values [(07/2)2 5c = 7.7 CH 5c = 10.6] and remarkably large CH coupling constants Jch= 161.9 and 160.1 Hz) indicate a mono-substituted cyclopropane ring A. The protons which belong to this structural unit at = 0.41 (AA ), 0.82 BB ) and 1.60 (M) with typical values for cis couplings 8.1 Hz) and trans couplings 4.9 Hz) of the cyclopropane protons can be identified from the CH COSY plot. [Pg.208]

The common side reaction in most thermal studies of fluorine-substituted cyclopropanes is difluorocarbene extrusion Increasing the number of fluonne substituents on the cyclopropane ring significantly increases the rate of difluorocarbene extrusion [135, 136, 137]... [Pg.923]

Vinyl-substituted cyclopropanes undergo thermal rearrangement to yield cyclopentenes. Propose a mechanism for the reaction, and identify the pericyclic process involved. [Pg.1202]

Scheme 36 Synthesis of donor-acceptor-substituted cyclopropanes 165 and cyclopentenes 166 from complexes 163 and acceptor-substituted alkenes 164 [115,116]... Scheme 36 Synthesis of donor-acceptor-substituted cyclopropanes 165 and cyclopentenes 166 from complexes 163 and acceptor-substituted alkenes 164 [115,116]...
Additions to cyclopropanes can take place by any of the four mechanisms already discussed in this chapter, but the most important type involves electrophilic attack. For substituted cyclopropanes, these reactions usually follow Markovnikov s rule, though exceptions are known and the degree of regioselectivity is often small. The application of Markovnikov s rule to these substrates can be illustrated by the reaction of 1,1,2-trimethylcyclopropane with The rule predicts that the... [Pg.989]

Cyclopropanes can be cleaved by catalytic hydrogenolysis. Among the catalysts used have been Ni, Pd, and Pt. The reaction can often be run under mild condi-tions." ° Certain cyclopropane rings, especially cyclopropyl ketones and aryl-substituted cyclopropanes," can be reductively cleaved by an alkali metal (generally Na or Li) in liquid anunonia." Similar reduction has been accomplished photo-chemically in the presence of LiC104." ... [Pg.1012]

Data for substituted cyclopropane rings can be conveniently arranged in five categories substituted cyclopropane sets, cyclopropylidene sets, trans-cyc o-propylene sets, cis-cyclopropylene sets, and reactions of cyclopropane rings. The correlation of data for cyclopropanes with the Hammett equation (19) and the extended Hammett equation (215) has been reported by Charton. [Pg.160]

The ionization potentials of substituted cyclopropanes also show a significant correlation with eq. (2). The value of pr obtained is comparable to that observed for substituted ethylenes and 1-substituted propenes (section II.A.2.) and is considerably above that found for substituted benzenes (for which a value of Pr = 59 is obtained). This result confirms the existence of a large resonance interaction between the cyclopropane ring and substituents. The magnitude of a is considerably greater for substituted cyclopropanes than it is for substituted ethylenes or benzenes. [Pg.160]

Only one set of data for the addition of bromine to substituted cyclopropanes has been reported (223). In this set, the substituents are of the type XCHj, and therefore the data were correlated by Charton with the constants. Once again, this area requires extensive investigation. [Pg.164]

The cyano-, carbomethoxy- and phenylsulfonyl-substituted cyclopropanes [54] (Cram and Ratajczak, 1968), [55] (Yankee and Cram, 1970a Yankee et al., 1973a) and [56] (Yankee and Cram, 1970b,c Howe etal., 1973 Yankee et al., 1973b) were epimerized or were solvolysed to give an open-chain methyl ether a carbocation-carbanion zwitterion was proposed as the intermediate. [Pg.186]

More recently, Carreira reported a [Fe(TPP)Cl]-catalyzed diastereoselective synthesis of trifluoromethyl-substituted cyclopropane in aqueous media [56]. The carbene precursor trifluoromethyl diazomethane is difficult to be handled, generated in situ from trifluoroethyl amine hydrochloride, and reacts with styrene in the presence of [Fe(TPP)Cl] to give the corresponding cyclopropanes in high yields and with excellent diastereoselectivities (Scheme 12). [Pg.125]

Several catalytic systems have been reported for the enantioselective Simmons Smith cyclopropanation reaction and, among these, only a few could be used in catalytic amounts. Chiral bis(sulfonamides) derived from cyclo-hexanediamine have been successfully employed as promoters of the enantioselective Simmons-Smith cyclopropanation of a series of allylic alcohols. Excellent results in terms of both yield and stereoselectivity were obtained even with disubstituted allylic alcohols, as shown in Scheme 6.20. Moreover, this methodology could be applied to the cyclopropanation of stannyl and silyl-substituted allylic alcohols, providing an entry to the enantioselective route to stannyl- and silyl-substituted cyclopropanes of potential synthetic intermediates. On the other hand, it must be noted that the presence of a methyl substituent at the 2-position of the allylic alcohol was not well tolerated and led to slow reactions and poor enantioselectivities (ee<50% ee). ... [Pg.226]

Metal-Catalyzed. Cyclopropanation. Carbene addition reactions can be catalyzed by several transition metal complexes. Most of the synthetic work has been done using copper or rhodium complexes and we focus on these. The copper-catalyzed decomposition of diazo compounds is a useful reaction for formation of substituted cyclopropanes.188 The reaction has been carried out with several copper salts,189 and both Cu(I) and Cu(II) triflate are useful.190 Several Cu(II)salen complexes, such as the (V-f-butyl derivative, which is called Cu(TBS)2, have become popular catalysts.191... [Pg.921]

It was envisioned that selective hydrogenolysis of the cyclopropane ring in polycyclopropanone could produce polyacetone as shown in Equation 4. There is precedent for the selective cyclopropane ringopening of the least substituted cyclopropane carbon-carbon bonds... [Pg.142]

ReiBig, H.-U. Donor-Acceptor-Substituted Cyclopropanes Versatile Building Blocks in Organic Synthesis, 144, 73-135 (1987). [Pg.251]

Salaiin, J. R. Y. Synthesis and Synthetic Applications of 1-Donor Substituted Cyclopropanes with Ethynvl, Vinyl and Carbonyl Groups, 144, 1-71 (1987). [Pg.251]

The thermal [1] or photochemical [5] isomerization of N-silylated allylamine in the presence of Fe(CO)5 provides the corresponding N-silylated enamines 7a and 7b. Z-enamine 7b does not react in any of the examined cycloadditions. The cyclopropanation of E-enamine 7a with methyl diazoacetate under copper(I) catalysis provides the donor-acceptor-substituted cyclopropane 9 [1], which can be converted in good yield into the interesting dipeptide 10 [6]. [Pg.65]

Two examples of substituted cyclopropane formation are shown below. This reactive zinc should dramatically increase the utility of the Simmons-Smith reaction. [Pg.235]

The [Rh(CO)2Cl]2-induced ring fission of substituted cyclopropanes 8a-b affords the rhodium complexes 9a-b via carbonylation [8]. The regioselectivity of carbonyl group insertion depends on the substituent. Reduction with NaBH4 leads to the corresponding alcohol. (Scheme 4)... [Pg.109]

The coupling reaction of the cyelopropylcuprates 87 with the 4-chloro-cyclobutenones 75 or their ethylene acetals 86 is useful for preparing the 4-cyclopropyl-2-cyclobutenones 88. The ring fission of 88 to the cyclohep-tadienones 89 is performed by a Rh(I)-catalyst. The less substituted cyclopropane ring bond is cleaved selectively. Cyclooctadienones are obtained by using 4-cyclobutyl-2-cyclobutenones [43]. (Scheme 31)... [Pg.121]

Internal cyclopropane ring-opening reactions have also been developed using hydroxyl-substituted cyclopropanes. A typical example of this strategy comes from the reaction of the polycylic alcohol 131, which reacts quantitatively with Hg(OAc)2 to yield the acetal 132 (Equation (45)).165 Carbonate moieties can also be used as internal nucleophiles as, for example, in the case of 133, which affords 134 in a 60% yield upon reaction with Hg(OCOCF3) (Equation (46)).166... [Pg.440]

Previous work had demonstrated the remarkable conversion of cyclopropane to ethylene (15) and of substituted cyclopropanes to a-olefins (16) over the metathesis catalyst PhWCl3-AlCl3, and results from that work inferred that a mixture of W=CHC2H5 and W=CH2 species would be generated from ethylcyclopropane. When a mixture of ethylcyclopro-... [Pg.462]

A variety of functionalized [3]radialenes have been prepared starting from the appropriately substituted cyclopropanes or cyclopropenes. West and Zecher have pioneered the chemistry of [3]radialenes with quinoid substituents. The general strategy of this synthesis is outlined in Scheme 513. A tris(4-hydroxyphenyl)cyclopropenylium... [Pg.936]


See other pages where Substitution cyclopropanation is mentioned: [Pg.14]    [Pg.43]    [Pg.50]    [Pg.82]    [Pg.83]    [Pg.160]    [Pg.160]    [Pg.160]    [Pg.161]    [Pg.163]    [Pg.182]    [Pg.18]    [Pg.33]    [Pg.141]    [Pg.27]    [Pg.192]    [Pg.74]    [Pg.24]    [Pg.111]    [Pg.41]    [Pg.609]   
See also in sourсe #XX -- [ Pg.249 ]




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2- Alkoxy substituted cyclopropanes

Activation energy substituted cyclopropanes

Carbonyl-substituted cyclopropanes

Cyclopropanation with acceptor-substituted carbene

Cyclopropanation with heteroatom-substituted carbene

Cyclopropane-1,1-dicarboxylates 2-substituted

Cyclopropane-substituted allenes

Cyclopropanes Substituted with Carbonyl Groups

Cyclopropanes Substituted with Phenyl(Aryl) Groups

Cyclopropanes alkyl-substituted—

Cyclopropanes electrophilic substitution

Cyclopropanes halo-substituted

Cyclopropanes highly substituted, synthesis

Cyclopropanes nucleophilic substitution

Cyclopropanes substituted

Cyclopropanes substituted

Cyclopropanes substitution

Cyclopropanes substitution

Cyclopropanes, alkyl-substituted, hydrogenation

Cyclopropanes, hydrogenolysis alkyl substituted

Diazomethane synthesis of substituted cyclopropanes

Donor synthons substituted cyclopropanes

Donor-acceptor-substituted cyclopropanes

Mono-substituted cyclopropanes

Selenium-substituted cyclopropanes

Study 6.7 Organic synthesis substituted cyclopropanes

Substitution 1,2,3-substituted cyclopropane

Substitution 1,2,3-substituted cyclopropane

Substitution 1,2,3-trisubstituted cyclopropanes

Substitution halo-substituted cyclopropanes

Sulfur, nucleophiles substituted cyclopropanes

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