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Phase-transfer catalysis aromatic substitution

Perchloro-organic chemistry structure, spectroscopy and reaction pathways, 25, 267 Permutational isomerization of pentavalent phosphorus compounds, 9, 25 Phase-transfer catalysis by quaternary ammonium salts, 15, 267 Phosphate esters, mechanism and catalysis of nucleophilic substitution in, 25, 99 Phosphorus compounds, pentavalent, turnstile rearrangement and pseudorotation in permutational isomerization, 9, 25 Photochemistry of aryl halides and related compounds, 20, 191 Photochemistry of carbonium ions, 9, 129 Photosubstitution, nucleophilic aromatic, 11, 225... [Pg.419]

Acid-catalyzed addition of aliphatic, aromatic or heteroaromatic cyanohydrins to ethyl vinyl ether, n-butyl vinyl ether or dihydro-4//-pyran provides base stable, protected cyanohydrin derivatives. Phase transfer catalyzed alkylation of aliphatic cyanohydrins with allylic bromides gave a-substituted a-allyl-oxyacetonitrile. Carbonyl compounds react wiA cyanide under phase transfer catalysis to give cyanohydrin anions, which are trapped by an acyl chloride or ethyl chloroformate to give acyl- or alkoxycarbonyl-protected cyanohydrins respectively. The reduction of the carbonyl group of an acyl cyanide by NaBH4 under phase transfer conditions followed by esterification serves as an alternative route to aldehyde-derived cyanohydrin esters. ... [Pg.551]

The first comprehensive study applying phase transfer catalysis to aromatic nucleophilic substitution appeared in 1974 and deals with carbanion nucleophiles derived from phenylalkanenitriles. The catalyst is triethylbenzylammonium chloride (TEBA).39 ... [Pg.39]

BTF is a suitable solvent for conducting heterogeneous reactions with phase transfer catalysis. The reaction of benzyl chloride with sodium cyanide (in toluene and BTF) or potassium cyanide (in acetonitrile and BTF) using two different phase transfer catalysts [70] gave similar yields (12.1 12.2). Aromatic nucleophilic substitution of chloro-2,4-dinitro benzene using potassium fluoride and... [Pg.97]

Kachurin, 0.1., A. P. Zaraiskii, L. I. Velichko, N. A. Zaraiskaya, N. M. Matvienko, and Z. A. Okhrimenko, Phase Transfer Catalysis in Reactions ofElectrophilic Aromatic Substitution, Russ. Chem. Bull, 44, 75/5(1995). [Pg.32]

Nucleophilic Substitutions. 7V,7V-Dimethyldithiocarbamoyl-acetonitrile (1) serves as an active methylene compound, because its carbanion is stabilized by sulfur and cyano groups. It can be alkylated stepwise in aqueous sodium hydroxide under phase transfer catalysis (eq 1). The anion undergoes nucleophilic aromatic substitution to give nitroarenes, with elimination of the dithiocarbamate group (eq 2). Nucleophilic addition of (1) to phenyl isothiocyanate also occurs readily. ... [Pg.214]

Solid-liquid phase transfer catalyst 2 for aliphatic and aromatic nucleophilic substitution synergistic effect with Cu in Ullmann synthesis as ligand in homogeneous hydrogenation catalysis (see 1st edition). [Pg.348]

Baeyer-Villiger oxidation of alkyl- and aryl-substituted C -C, cycloalkanones, steroid ketones and branched chain aliphatic ketones is catalysed by arsonated polystyrene resins [53], Larger size cycloalkanones and linear ketones react much slower. Water miscible and immiscible solvents can be used. With the latter, the resin behaves as an effective catalyst and a phase-transfer agent (triphase catalysis). The same compounds are also epoxidation catalysts. More recently, a method for the preparation of phenols by the oxidation of aromatic aldehydes and ketones has been reported. The most convenient catalysts are nitro-substituted arylseleninic acids and corresponding diselenides [54]. [Pg.24]


See other pages where Phase-transfer catalysis aromatic substitution is mentioned: [Pg.700]    [Pg.38]    [Pg.128]    [Pg.526]    [Pg.426]    [Pg.158]    [Pg.241]    [Pg.360]    [Pg.526]    [Pg.454]    [Pg.976]    [Pg.841]    [Pg.30]    [Pg.205]    [Pg.138]    [Pg.116]    [Pg.1424]   


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