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Synthesis nucleophilic substitution

Other Synthesis Routes. Several alternative routes to the nucleophilic substitution synthesis of polysulfones are possible. Polyethersulfone can be synthesized by the electrophilic Friedel-Craffs reaction of bis(4-chlorosulfonylphen i)ether [121-63-1] with diphenyl ether [101-84-8] (11—13). [Pg.462]

M A K O S Z A Vicarious nucleophilic substitution Synthesis ot alkyl substituted heterocydes by vicarious nucleophWc substitution ol hydrogen in heteroarenes, nrtrodenvatives of heteroarenes. [Pg.353]

M A K 0 S Z A Vicarious nucleophilic substitution Synthesis of afcyl substituted heterocydes by vicarious" nucleophilic substitution of hydrogen in heteroarenes, nitroderivatives of heteroarenes. [Pg.354]

Unimolecular thermal and photochemical reactions Electrophilic attack at heteroatoms Electrophilic attack at carbon atoms Nucleophilic attack at carbon atoms Electrophilic attack on substituents Nucleophilic attack on substituents Nucleophilic substitution Synthesis... [Pg.634]

Section 8 13 When nucleophilic substitution is used for synthesis the competition between substitution and elimination must be favorable However the normal reaction of a secondary alkyl halide with a base as strong or stronger than hydroxide is elimination (E2) Substitution by the Sn2 mechanism predominates only when the base is weaker than hydroxide or the alkyl halide is primary Elimination predominates when tertiary alkyl halides react with any anion... [Pg.355]

Allyl chlonde is quite reactive toward nucleophilic substitutions especially those that proceed by the 8 2 mechanism and is used as a starting material m the synthesis of a variety of drugs and agricultural and industrial chemicals... [Pg.397]

A long standing method for the preparation of ethers is the Williamson ether synthesis Nucleophilic substitution of an alkyl halide by an alkoxide gives the carbon-oxygen bond of an ether... [Pg.672]

Next in what amounts to an intramolecular Williamson ether synthesis the alkoxide oxygen attacks the carbon that bears the halide leaving group giving an epoxide As m other nucleophilic substitutions the nucleophile approaches carbon from the side oppo site the bond to the leaving group... [Pg.677]

Aryl halides cannot be converted to arylammes by the Gabriel synthesis because they do not undergo nucleophilic substitution with N potassiophthalimide m the first step of the procedure... [Pg.930]

One of the oldest methods for the synthesis of ammo acids dates back to the nineteenth century and is simply a nucleophilic substitution m which ammonia reacts with an a halo carboxylic acid... [Pg.1121]

The actual process of solid phase peptide synthesis outlined m Figure 27 15 begins with the attachment of the C terminal ammo acid to the chloromethylated polymer m step 1 Nucleophilic substitution by the carboxylate anion of an N Boc protected C terminal... [Pg.1141]

Nucleophilic Substitution Route. Commercial synthesis of poly(arylethersulfone)s is accompHshed almost exclusively via the nucleophilic substitution polycondensation route. This synthesis route, discovered at Union Carbide in the early 1960s (3,4), involves reaction of the bisphenol of choice with 4,4 -dichlorodiphenylsulfone in a dipolar aprotic solvent in the presence of an alkaUbase. Examples of dipolar aprotic solvents include A/-methyl-2-pyrrohdinone (NMP), dimethyl acetamide (DMAc), sulfolane, and dimethyl sulfoxide (DMSO). Examples of suitable bases are sodium hydroxide, potassium hydroxide, and potassium carbonate. In the case of polysulfone (PSE) synthesis, the reaction is a two-step process in which the dialkah metal salt of bisphenol A (1) is first formed in situ from bisphenol A [80-05-7] by reaction with the base (eg, two molar equivalents of NaOH),... [Pg.460]

The first step in this scheme is a classical aromatic nucleophilic substitution. Details of the method have been expounded (14—17). References 14 and 15 are concerned with the synthesis of the diaryl hahde intermediate whereas References 16 and 17 discuss the synthesis of the polymers, with emphasis on the polymerisation of PPSF by this route. [Pg.463]

Broadly speaking, nucleophilic substitution may be divided into (a) the direct displacement of hydrogen and (b) the displacement of other substituents. Displacements of type (a) are rare and are typified by the Tschitschibabin reaction. Pyrazine reacts with NaNHa/NHs to yield 2-aminopyrazine, but no yield has been quoted (46USP2394963). Generally, the synthesis of aminopyrazines, aminoquinoxalines and aminophenazines is more readily accomplished by alternative methods, particularly displacement of halogen from the corresponding halo derivatives, which are themselves readily available. [Pg.164]

In those reactions where the fV-oxide group assists electrophilic or nucleophilic substitution reactions, and is not lost during the reaction, it is readily removed by a variety of reductive procedures and thus facilitates the synthesis of substituted derivatives of pyrazine, quinoxaline and phenazine. [Pg.172]

H-Dibenz[6,/]azepine-5-carboxamide pharmacological properties, 7, 546 Dibenz[6,e]azepine-6,11-dione, 10-amino-reactions, 7, 526 Dibenz[6,e]azepinediones intramolecular nucleophilic substitution, 7, 516 synthesis, 7, 531 Dibenz[6,e]azepine-5,11-diones epoxides, 7, 515 reduction, 7, 525... [Pg.599]

Furan-2-carbaldehyde, 3-amino-Friedlander synthesis, 4, 648 Furan-2-carbaldehyde, 3-azido-reduction, 4, 647 Furan-2-carbaldehyde, 4-bromo-X-ray diffraction, 4, 543 Furan-2-carbaldehyde, 5-bromo-nucleophilic substitution, 4, 612 reactions... [Pg.632]

Furazano[3,4-d]pyrimidine, 7-amino-synthesis, 6, 729 UV spectra, 6, 713 Furazanopyrimidines amine synthesis from, 5, 591 synthesis, 6, 418 Furazano[3,4-d]pyrimidines nucleophilic attack, 6, 719 nucleophilic substitution, 6, 713 reduction, 6, 402 7-substituted reactions, 6, 722 Furazano[3,4-a]quinolizines synthesis, 6, 730... [Pg.636]

Imid azolin-2-ones polymers, 1, 296 synthesis, 5, 466, 491 Imidazolium cations, 2-fluoro-nucleophilic substitution, 5, 413 Imidazolium chloride, 4-amino-l-methyl-2,3-diphenyl-... [Pg.659]

Isoquinoline, l-(dimethylamino)-methylation, 2, 179 Isoquinoline, halo-lithium derivatives, 2, 363 Isoquinoline, 3-halo-nucleophilic substitution, 2, 59 Isoquinoline, l-halo-3-hydroxy-synthesis... [Pg.679]

Phenanthro[l,2-d][l,2,3]selenadiazole, 10,11 dihydro- H NMR, 6, 348 synthesis, 6, 353 Phenanthro[b]thiophenes synthesis, 4, 914 Phenanthro[4,5-bcd]thiophenes synthesis, 4, 883, 907, 914 Phenanthro[9,10-ej[l, 2,4]triazines synthesis, 3, 434 Phenarsazin synthesis, 1, 561 Phenazine dyes, 3, 196-197 nitration, 3, 177 UV Spectra, 2, 127 Phenazine, 3-amino-2-hydroxy-in colour photography, 1, 374 Phenazine, 1-chloro-nucleophilic substitution, 3, 164-165 5-oxide... [Pg.740]


See other pages where Synthesis nucleophilic substitution is mentioned: [Pg.445]    [Pg.445]    [Pg.256]    [Pg.305]    [Pg.16]    [Pg.460]    [Pg.77]    [Pg.56]    [Pg.128]    [Pg.523]    [Pg.539]    [Pg.539]    [Pg.551]    [Pg.575]    [Pg.629]    [Pg.650]    [Pg.650]    [Pg.652]    [Pg.659]    [Pg.659]    [Pg.666]    [Pg.667]    [Pg.684]    [Pg.708]    [Pg.716]    [Pg.720]    [Pg.730]   
See also in sourсe #XX -- [ Pg.21 ]




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Acetonitrile, phenylaromatic nucleophilic substitution synthesis

Alkyl fluorides synthesis nucleophilic substitution

Aromatic nucleophilic substitution synthesis

Aryne intermediates, nucleophilic substitution synthesis

Ligand synthesis nucleophilic substitution

Multicomponent Synthesis of Annelated Thiopyranones by Coupling-Addition-Nucleophilic Aromatic Substitution Sequence

Natural product synthesis nucleophilic substitution

Nucleophilic substitution oxidation synthesis

Nucleophilic substitution reactions alcohol synthesis

Nucleophilic substitution reactions amine synthesis

Nucleophilic substitution reactions ether synthesis

Nucleophilic substitution reactions organic synthesis

Radical-nucleophilic aromatic substitution heterocyclic synthesis

Substitution synthesis

Syntheses Involving Nucleophilic Substitution

Synthesis continued) nucleophilic aromatic substitution

Synthesis of Alcohols by Nucleophilic Substitution

Synthesis via nucleophilic substitution

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