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Cinnamylation reaction

A two-atom carbocycle enlargement is accomplished by Barbier-type reaction in water (Scheme 8.26) [43]. The coupling reaction of a-keto esters with allyl, propargyl, and allenyl halides using indium metal in aqueous solvents afforded a-hydroxy- y,(5-unsaturated esters (Scheme 8.27) [44]. Indium-mediated allylation of 1,2-diones affords a-hydroxy keto compounds. In some cinnamylation reactions the corresponding a-coupling products are obtained (Scheme 8.28) [45]. [Pg.336]

Unusual cyclocarbonylation of allylic acetates proceeds in the presence of acetic anhydride and an amine to afford acetates of phenol derivatives. The cinnamyl acetate derivative 408 undergoes carbonylation and Friedel-Crafts-type cyclization to form the a-naphthyl acetate 410 under severe condi-tions[263,264]. The reaction proceeds at 140-170 under 50-70 atm of CO in the presence of acetic anhydride and Et N. Addition of acetic anhydride is essential for the cyclization. The key step seems to be the Friedel-Crafts-type cyclization of an acylpalladium complex as shown by 409. When MeOH is added instead of acetic anhydride, /3,7-unsaturated esters such as 388 are... [Pg.344]

Butyrolactones are prepared by intramolecular reaction of haloallylic 2-alkynoates. The a-chloromethylenebutyrolactone 301 is prepared by the intramolecular reaction of300[150,151]. 4 -Hydroxy-2 -alkenyl 2-alkynoates can be used instead of haloallylic 2-alkynoates, and in this reaction, Pd(II) is regenerated by elimination of the hydroxy group[152]. As a related reaction, the q-(chloromethylene)-7-butyrolactone 304 is obtained from the cinnamyl 2-alkynoate 302 in the presence of LiCl and CuCbflSS]. Isohinokinin (305) has been synthesized by this reaction[l 54]. The reaction is explained by chloro-palladation of the triple bond, followed by intramolecular alkene insertion to generate the alkylpalladium chloride 303. Then PdCb is regenerated by attack of CuCb on the alkylpalladium bond as a key step in the catalytic reaction. [Pg.505]

Upon treatment with aluminum ethoxide, the aldehyde is converted to cinnamyl cinnamate [122-69-0] (Tishchenko reaction), a valuable perfumery ingredient. [Pg.175]

Diphenylbutadiene has been obtained from phenylacetic acid and cinnamaldehyde with lead oxide, by the dehydrogenation of l,4-diphenyl-2-butene with butyllithium, and by the coupling reaction of benzenediazonium chloride and cinnamyl-ideneacetic acid." The present method gives better yields than those previously reported, is adaptable to the preparation of a variety of substituted bistyryls, and is relatively easy to carry out. [Pg.38]

Pd(OAc)2, TPPTS, CH3CN, H2O, Et2NH, 30 min, 89-99% yield. Deprotection can be achieved in the presence of a prenyl or cinnamyl ester, but as the reaction times increase, these esters are also cleaved.Prenyl carbamates and allyl carbonates are cleaved similarly. [Pg.528]

Another point for structural diversification is the sulfonamide group. Imai had already shown that a wide variety of groups could be introduced at this position to optimize the reaction. Since a wide variety of sulfonyl chlorides are commercially available, a number of different types of groups could be examined (Scheme 3.34). Testing of a variety of aryl and alkyl groups on the 1,2-cyclohexanediamine backbone demonstrates that the simple methanesulfonamide 122 is clearly superior or equal to many other analogs in the cyclopropanation of cinnamyl alcohol (Table 3.11). Another concern which was directly addressed by this survey was the question of catalyst solubility. [Pg.136]

In total, 29 pbospborus-containing chiral ligands of various structures were screened under tlie optimized ji-selective condhions, but most of tlieni gave little or no chiral induction. Hie four ligands 38a-d, all derived from i-)-TADDOL, depicted in Fig. 8.4 gave tts in excess of 3096 in the reaction between etliyl magnesium bromide and cinnamyl cliloride. [Pg.278]

A halogenating system related to the preceding case is formed by the reaction of triphenylphosphine with molecular bromine or chlorine. The system is not as sensitive to moisture as the phosphine-carbon tetrahalide system (see preceding section), but it suffers from the disadvantage that hydrohalic acids are produced as the reaction proceeds. Nevertheless, sensitive compounds can be successfully halogenated by the system, as exemplified by the preparation of cinnamyl bromide from the alcohol. [Pg.46]

It is well known that aziridination with allylic ylides is difficult, due to the low reactivity of imines - relative to carbonyl compounds - towards ylide attack, although imines do react with highly reactive sulfur ylides such as Me2S+-CH2-. Dai and coworkers found aziridination with allylic ylides to be possible when the activated imines 22 were treated with allylic sulfonium salts 23 under phase-transfer conditions (Scheme 2.8) [15]. Although the stereoselectivities of the reaction were low, this was the first example of efficient preparation of vinylaziridines by an ylide route. Similar results were obtained with use of arsonium or telluronium salts [16]. The stereoselectivity of aziridination was improved by use of imines activated by a phosphinoyl group [17]. The same group also reported a catalytic sulfonium ylide-mediated aziridination to produce (2-phenylvinyl)aziridines, by treatment of arylsulfonylimines with cinnamyl bromide in the presence of solid K2C03 and catalytic dimethyl sulfide in MeCN [18]. Recently, the synthesis of 3-alkyl-2-vinyl-aziridines by extension of Dai s work was reported [19]. [Pg.41]

Some ten years later, Darwish and Braverman50,51 undertook a more extensive study of this rearrangement, which has revealed some unique features. These investigators examined the behavior of six different esters, namely allyl, crotyl, a-methylallyl, racemic and optically active a, y-dimethylallyl, cinnamyl and a-phenylallyl 2,6-dimethylbenzene-sulfinates under various reaction conditions. [Pg.670]

Tomoxetine and fluoxetine are antidepressants. Both enantiomers of each compound can be prepared enantiospecifically starting from cinnamyl alcohol. Give a reaction sequence that will accomplish this objective. [Pg.1159]


See other pages where Cinnamylation reaction is mentioned: [Pg.388]    [Pg.176]    [Pg.116]    [Pg.122]    [Pg.125]    [Pg.128]    [Pg.278]    [Pg.47]    [Pg.278]    [Pg.871]    [Pg.687]    [Pg.124]    [Pg.195]    [Pg.47]    [Pg.62]    [Pg.62]    [Pg.139]    [Pg.82]    [Pg.285]    [Pg.342]    [Pg.286]    [Pg.287]    [Pg.687]    [Pg.27]    [Pg.38]    [Pg.51]    [Pg.381]    [Pg.122]    [Pg.395]    [Pg.408]    [Pg.50]   
See also in sourсe #XX -- [ Pg.336 ]




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Cinnamyl alcohol reactions

Ethyl reaction with cinnamyl chloride

Triphenylphosphine, in preparation reaction with cinnamyl chloride

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