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Ketene, vinyl

As an extension of this work, these authors have applied this catalyst system to vinylogous asymmetric Mukaiyama-type aldol reactions, involving silyl vinyl ketene acetals and pyruvate esters. These reactions afforded the corresponding y,5-unsaturated a-hydroxy diesters with quaternary centres in high yields and enantioselectivities of up to 99% ee (Scheme 10.25). It was shown that the presence of CF3CH2OH as an additive facilitated the turnover of the catalyst. [Pg.314]

The reaction course is shown in Scheme 4. Enyne 12 reacts with 2 to give vinyl carbene complex 17, which is in a state of equilibrium with vinyl ketene complex 21. [2+2] Cycloaddition of the ketene moiety and alkene part in 21 gives cyclob-utanone 22. On the other hand, the vinyl carbene complex 17 reacts with the alkene intramolecularly to produce metalacyclobutane 18. From metalacyclob-utane 18, reductive elimination occurs to give cyclopropane derivative 23. Ret-... [Pg.145]

The cyclobutenone (359) or the a,p-unsaturated acid chloride (360) could be converted to the vinyl-ketene (361), which reacted readily with 1,3-butadiene (362)... [Pg.136]

As part of a study of the reactions of metallacyclic y-ketovinyl complexes of molybdenum and tungsten with acetylenes, directed toward the synthesis of complexed -/-lactones, Stone has reported92 the isolation of several vinyl-ketene complexes. When complex 72 was heated with 2-butyne, one molecule of the alkyne was incorporated into the complex with concomitant carbonylation. X-ray analysis of the product (73) has shown unequivocally that the C-l to C-4 vinylketene fragment is bonded in a planar, rj4-configu-ration. In contrast to the thermal reaction, ultraviolet irradiation of 72 or 74 in the presence of 2-butyne affords the complexes 75 and 76, respectively, where the lone carbonyl remaining after alkyne insertion had been replaced by a third molecule of the alkyne. [Pg.296]

This Asian species is a major agricultural pest. The pheromone has been proposed to consist of three male-specific compounds, only one of which, (Z)-exo-a-bergamotenal 150, has been reported in the literature [114]. The racemic compound was synthesized starting from farnesoic acid chloride 146 (Scheme 25) [114]. Thus, the vinyl ketene prepared from acid chloride 146 underwent 2+2 cycloaddition to give bicyclic ketone 147. The ketone function was removed by reaction with hydrazine followed by treatment of the resulting hy-... [Pg.82]

W. D. Wulff, Transition Metal Carbene Complexes Alkyne and Vinyl Ketene Chemistry, in Comprehensive Organometallic Chemistry II, Vol. 12, L. S. Hegedus, Ed., Pergamon, Tarrytown, NY, 1995, Chapter 5.3, pp. 469/. [Pg.587]

The vinyl ketene 184, formed by Wolff rearrangement of the vinylcarbene 183, in contrast adds across the N=N bond of excess 182 to give the adduct 185 (Scheme 64). 2... [Pg.49]

JACS 107 2192 (alkyl and vinyl ketene), 2194 (alkoxy ketene), 4339 (vinyl ketene) (1985) 110 649 (1988) (alkyl ketene)... [Pg.1341]

A stereocontrolled Staudinger cycloaddition reaction has been reported to be performed on vinylketenes, possessing a y-heteroatom, and imines to produce frans-vinyl-(3-lactams [112]. The vinyl side chain adopted stereoselectively the (Z) configuration in the transition state, stabilizing the vinyl ketene and leading, exclusively, to the frans-3-vinyl-(3-lactam (Scheme 37). [Pg.127]

In a similar way the complex (TPP)Al-0-C(C4H9) =CH-CH2-C2H5 was prepared [116] from A1(TPP)(C2H5) and rm-butyl vinyl ketene together with poly-ferf-butyl methacrylate. Every step of propagation in the photoinduced polymerization is conditioned by light absorption and includes the photoinsertion of an unsaturated molecule [115]. [Pg.157]

Trialkylsilyl vinyl ketenes (72) have been shown to react stereoselectively with a-benzotriazolyl organolithium species to give highly substituted cyclopentenones. The selectivity was found to be kinetic, not thermodynamic, in origin. Several possible mechanisms have been proposed (Scheme 10). It has been suggested that the observed stereoselectivity may result from torquoselectivity in a concerted reaction, or from stereospecific conrotatory cyclization of cation (73), formed stereoselectively because of the interaction shown between the electron-withdrawing group Z and the metal ion.75... [Pg.420]

Tetrahydropyridine 152 can be inserted into the iron-acyl carbon bond of the Fe(CO)3-bound vinyl ketene 158 to give the iron complex 159, which can be oxidatively cleaved to give bicyclic lactam 160 (Scheme 42)... [Pg.195]

Chiral dienes have proved to be less popular in asymmetric Diels-Alder reactions than their chiral dienophile counterparts. This is primarily a result of the problem of designing a molecule that incorporates a chiral moiety, such as the formation of a chiral isoprenyl ether or vinyl ketene acetal.187-190 In addition, diastereoselectivities often are not high,54 191-199 as illustrated by the cycloaddition of the chiral butadiene 5 with acrolein (Scheme 26.4). Improved stereoselection is observed through the use of double asymmetric induction, although this is a somewhat wasteful protocol.35,54 177 200... [Pg.510]

Intramolecular insertion of carbon monoxide into the metal-carbene bond of the (Ej-isomer of D leads to the t/4-vinyl ketene complex intermediate E. Experimental support for this type of intermediate has been provided by the isolation of Cr( CO) 3-coordinated dienyl ketenes related to 5 (Scheme 4) [15a], and by trapping the vinyl ketene intermediates as vinyl lactone derivatives in the course of the reaction of chromium carbene complexes with 1-alkynols [15b]. [Pg.254]

The benzannulation reaction tolerates a range of alkyl and aryl allcynes, which may bear additional functionalities. The simultaneous presence of two bulky substituents directly attached to the C=C bond, as for example in bis(trimethylsilyl)ethyne, however, blocks the final electrocyclization and causes the reaction to stop at the vinyl ketene stage [44]. Neither very electron-rich nor very electron-poor allcynes can undergo benzannulation. Strongly electron-deficient allcynes such as hexafluorobut-2-yne cannot adequately compete with car-... [Pg.264]

C-3 of the naphthalene nucleus that controls the electrophilic ring-closure of the vinyl ketene intermediate moreover, the degree of aromaticity of the angular rings in the phenanthrene skeleton exceeds that in the anthracene analogues. This regioselectivity observed in the benzannulation of chromium carbenes is paralleled by results observed for 2-naphthyl cyclo-butenones [77] and for the palladium-catalyzed cyclocarbonylation of 2-naphthyl allyl acetates [78]. [Pg.280]

To date, reports of linear benzannulation are very limited [55b, 79]. One example referred to the annulation of a 2-naphthohydroquinoid chromium carbene, which was employed in the synthesis of anthracycline (see Section 8.6.2) [79]. Later, a complementary approach in this area started from 2-naphthylcyclopropenes which, in the presence of hexacarbonyl-molybdenum, served as precursors for the vinyl ketenes required for linear annulation [55b],... [Pg.280]

Later, the dimethylphenylsilyl adduct 75 d was not only converted to the vinyl-ketene acetal 81 by a Wittig-Horner reaction via the ester 80, but also by reduction of 80 to the aldehyde 84 followed by silylation of the corresponding anion to the silylenol ether 85. Vinylcyclohexenes without terminal substitution (e. g., 83) was prepared via an alcohol derived from 80 or 84 [73,74]. The least substituted diene 83 was alternatively prepared from the triflate 82 in a Stille coupling with trialkylvinyl stannane [75] (Scheme 24), a reaction also used by Toshima etal.[76]. [Pg.141]

Imines derived from glyoxylic acid derivatives successfully lead to 3-lactams which are potential precursors of various antibiotics (equation 29). Conjugated imines have also been used in this context they give exclusively [2 -i- 2] cycloadducts with azido-, phthalimido-, phenoxy- and vinyl-ketene precursors (equations 30 and 31). However, [4 -i- 2] adducts are the only observed products with haloketene precursors (equation 32). - ... [Pg.94]

The mechanism proposed by Ddtz involves the insertion of a carbon monoxide into the vinyl carbene complex intermediate with the formation of the vinyl ketene complex (255). Electrocyclic ring closure of (255) leads to the cyclohexadienone complex (252), which is related to the final tenzannulation product by a tautomerizadon when R is hydrogen. The mechanism proposed by Casey differs from that of Ddtz in that the order of the steps involving carbon monoxide insertion and cyclization to the aryl or alkenyl substiment is reversed. < Specifically, the vinyl carbene complex intermediate (248) first undergoes cyclization to the metallacyclohexadiene (249), followed by cartion monoxide insertion to give the intermediate (251), and finally reductive elimination to give cyclohexadienone intermediate (252). At this time the circumstantial evidence favors the intermediacy of vinyl ketene intermediates since they can be trapped from these reactions and isolated where the metal is dispaced from the vinyl ketene functionality however, there is not any evidence which can rule out the alternative mechanism. [Pg.1094]


See other pages where Ketene, vinyl is mentioned: [Pg.94]    [Pg.116]    [Pg.307]    [Pg.334]    [Pg.1341]    [Pg.1341]    [Pg.1341]    [Pg.1342]    [Pg.2110]    [Pg.334]    [Pg.933]    [Pg.256]    [Pg.183]    [Pg.184]    [Pg.184]    [Pg.53]    [Pg.1341]    [Pg.1341]    [Pg.1341]    [Pg.1342]    [Pg.3255]    [Pg.140]    [Pg.141]    [Pg.1094]    [Pg.1104]   
See also in sourсe #XX -- [ Pg.256 ]

See also in sourсe #XX -- [ Pg.482 ]




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Chromium-vinyl ketene

Ethers, vinyl reaction with ketene acetals

Ketenes vinyl

Ketenes vinyl

Ketenes, vinyl cycloaddition

Ketenes, vinyl cycloaddition 1,3-dienes

Ketenes, vinyl cycloaddition intramolecular cycloadditions

Ketenes, vinyl cycloaddition synthesis

Sulfoxides, vinyl silyl ketene acetals

Vinyl ketene acetal

Vinyl ketene silyl acetals

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