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Aryl acetalization with

Ercolani, G. and Mandolini. L. (1990) Alkali and alkaline-earth metal ion catalysis in the reaction of aryl acetates with methoxide ion. Effect of a poly (oxyethylene) side arm. J. Am. Chem. Soc., 112, 423. [Pg.140]

An acetylrhodium aryloxide complex was obtained as an oxidative addition product of an aryl acetate with a Rh(I) complex involving the acyl-oxygen bond cleavage (Eq.21) [61]. [Pg.175]

Alkynes with EWGs are poor substrates for the coupling with halides. Therefore, instead of the inactive propynoate, triethyl orthopropynoate (350) is used for the coupling with aryl halides to prepare the arylpropynoate 351. The coupling product 353 of 3,3-dicthoxy-l-propyne (352) with an aryl halide is the precursor of an alkynal[260]. The coupling of ethoxy) tributylstan-nyl)acetylene (354) with aryl halides is a good synthetic method for the aryl-acetate 355[261]. [Pg.177]

The reactant corresponding to retrosynthetic path b in Scheme 2.2 can be obtained by Meerwein arylation of vinyl acetate with o-nitrophcnyldiazonium ions[9], Retrosynthetic path c involves oxidation of a 2-(o-nitrophenyl)ethanol. This transformation has also been realized for 2-(o-aminophenyl)ethanols. For the latter reaction the best catalyst is Ru(PPhj)2Cl2. The reaction proceeds with evolution of hydrogen and has been shown to be applicable to a variety of ring-substituted 2-(o-aminophenyl)ethanols[10]. [Pg.15]

Phenolic compounds are weaker nucleophiles and better leaving groups than aliphatic alcohols. They do not yield polyesters when reacted with carboxylic acids or alkyl carboxy lates. The synthesis of polyesters from diphenols is, therefore, generally carried out through the high-temperature carboxylic acid-aryl acetate or phenyl ester-phenol interchange reactions with efficient removal of reaction by-product (Schemes 2.10 and 2.11, respectively). [Pg.62]

Vinylic and aryl halides can be used to vinylate or arylate carboxylic esters (but not ketones) by the use of NiBr2 as a catalyst. " However, ketones have been vinylated by treating their enol acetates with vinylic bromides in the presence of a Pd... [Pg.552]

The arylation of the unsubstituted acrolein ethylene acetal with the bromopolyaromatics and bromoquinoline was studied in the presence of Pd(OAc)2 as catalyst (reaction conditions catalyst (2%), K2CO3, DMF, 110°C). The reaction was successfully performed with all evaluated poly(hetero)aromatics (Entry 5). [Pg.188]

Arylacetate esters have been generated by coupling aryl bromides with stannyl enolates generated from silyl ketene acetals. [Pg.730]

A palladium catalyst with a less electron-rich ligand, 2,2-dipyridyl-methylamine-based palladium complexes (4.2), is effective for coupling of aryl iodides or bromides with terminal alkynes in the presence of pyrrolidine and tetrabutylammonium acetate (TBAB) at 100°C in water.37 However, the reactions were shown to be faster in NMP solvent than in water under the reaction conditions. Palladium-phosphinous acid (POPd) was also reported as an effective catalyst for the Sonogashira cross-coupling reaction of aryl alkynes with aryl iodides, bromides, or chlorides in water (Eq. 4.18).38... [Pg.109]

Fig. 4 A Bronsted plot of log pKz phenol in methanol vs. log fcaa fn( OCH3-) for methanolysis of aryl acetates promoted by 9 Zn2 + ( OCH3), T = 25°C, data in Table 7. Dashed line corresponds to NLLSQ fit of data to Equation (15) encompassing all esters with Pi = -0.023 0.03 and f 2 = -0.690 0.005 with a breakpoint of pJTa H = 14.8. Reproduced from ref. 16f with permission. Fig. 4 A Bronsted plot of log pKz phenol in methanol vs. log fcaa fn( OCH3-) for methanolysis of aryl acetates promoted by 9 Zn2 + ( OCH3), T = 25°C, data in Table 7. Dashed line corresponds to NLLSQ fit of data to Equation (15) encompassing all esters with Pi = -0.023 0.03 and f 2 = -0.690 0.005 with a breakpoint of pJTa H = 14.8. Reproduced from ref. 16f with permission.
Selective monoalkylation of methyl aryl-acetates by alkylhalides is difficult with conventional bases. It may be achieved by application of the three-step procedure outlined above adding (33) to the methyl arylacetates at a low temperature... [Pg.474]

For therapeutical purposes, a likewise frequently used group of drug compounds are the nonsteroidal anti-inflammatory drugs (NSAID). Among the best known representatives of the aryl acetic acid derivatives is diclofenac as well as ibuprofen, an aryl propionic acid derivative. As both have acidic properties, they dissociate while being dissolved and may form salts with amphiphilic properties. Together with appropriate counterions these amphiphilic organic acids may form lyotropic mesophases with water even at room or body temperature, for example, diclofenac diethylamine... [Pg.134]

The required arylamine 973 was prepared starting from the aryl acetate 937. The compound 937 was also used for the palladium(II)-catalyzed total synthesis of carbazoquinocin C (274) (545) (see Scheme 5.124) and carbazomycin G (269) (652). The acetate 937 was transformed to the corresponding 5-nitro derivative 974 by reacting with fuming nitric acid in a mixture of acetic anhydride and glacial acetic... [Pg.278]


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See also in sourсe #XX -- [ Pg.392 ]




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