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Sulfonyl fluorides, from

Furthermore, the cleavage of organic sulfites and sulfates by hydrogen fluoride gives the corresponding alkyl or acyl fluorides in fair to good yield,287 e.g. formation of acetyl fluoride from the mixed anhydride287 or sulfonyl fluorides from sulfonic acid anhydrides.287... [Pg.145]

Table 1. Fuel cell membranes prepared from poly (Perfluorosulfonic acid) arising from copolymers of tetrafluoroethylene (TFE) and perfluorovinyl ether alkyl sulfonyl fluoride (from Souzy, 2005) ... Table 1. Fuel cell membranes prepared from poly (Perfluorosulfonic acid) arising from copolymers of tetrafluoroethylene (TFE) and perfluorovinyl ether alkyl sulfonyl fluoride (from Souzy, 2005) ...
Yields of sulfonyl fluorides prepared by ECF vary depending on the particular stmcture. Chain degradation becomes more important as the chain length kicreases (6). Yields can vary from 96% for perfluoromethanesulfonyl fluoride (7) to 43—50% for perfluorooctanesulfonyl fluoride (8). Trifluoromethanesulfonic acid can be prepared via trifluoromethanesulfenyl chloride as shown ki equations 5—7 (9). [Pg.314]

General Reaction Chemistry of Sulfonic Acids. Sulfonic acids may be used to produce sulfonic acid esters, which are derived from epoxides, olefins, alkynes, aHenes, and ketenes, as shown in Figure 1 (10). Sulfonic acids may be converted to sulfonamides via reaction with an amine in the presence of phosphoms oxychloride [10025-87-3] POCl (H)- Because sulfonic acids are generally not converted directiy to sulfonamides, the reaction most likely involves a sulfonyl chloride intermediate. Phosphoms pentachlotide [10026-13-8] and phosphoms pentabromide [7789-69-7] can be used to convert sulfonic acids to the corresponding sulfonyl haUdes (12,13). The conversion may also be accompHshed by continuous electrolysis of thiols or disulfides in the presence of aqueous HCl [7647-01-0] (14) or by direct sulfonation with chlorosulfuric acid. Sulfonyl fluorides are typically prepared by direct sulfonation with fluorosulfutic acid [7789-21-17, or by reaction of the sulfonic acid or sulfonate with fluorosulfutic acid. Halogenation of sulfonic acids, which avoids production of a sulfonyl haUde, can be achieved under oxidative halogenation conditions (15). [Pg.95]

Inhibitors which interact only with peptidases of one catalytic type include pepstatin (aspartic peptidases) E64 (cysteine peptidases from clan CA) diisopropyl fluorophosphates (DFP) and phenylmethane sulfonyl-fluoride (PMSF) (serine peptidases). Bestatin is a useful inhibitor of aminopeptidases. [Pg.883]

This reaction, parallel with 10-77, is the standard method for the preparation of sulfonyl halides. Also used are PCI3 and SOCI2, and sulfonic acid salts can also serve as substrates. Sulfonyl bromides and iodides have been prepared from sulfonyl hydrazides (ArS02NHNH2, themselves prepared by 10-126) by treatment with bromine or iodine.Sulfonyl fluorides are generally prepared from the chlorides, by halogen exchange. [Pg.577]

The formation of halogenation products from Grignard reagents and sulfonic acid anhydrides is the result of an oxidative reaction pathway . This side-reaction can be reduced by using sulfonic acid esters, however, in these cases alkylations as well as twofold sulfonylations (cf. corresponding results with sulfonyl fluorides ) are competing (equations 64 and 65). [Pg.203]

Although the chemical shifts of most commonly encountered orga-nofluorine compounds are upheld of CFC13 and thus have negative values, there are a number of structural situations for fluorine that lead to positive chemical shifts (downfield from CFC13). These include acyl and sulfonyl fluorides as well as the fluorines of SF5 substituents. [Pg.27]

Carbon dioxide has also proven to be an exemplary medium for the polymerization of TFE with perfluorinated alkylvinyl ether monomers containing sulfonyl fluoride such as CF2=CF0CF2CF(CF3)0CF2CF2S02F (PSEVPE). As seen in Table 13.2, the dramatic difference in the number of acid end groups between the commercial sample and those made in C02 indicates that chain-transfer processes stemming from vinyl ether radical arrangement are not nearly as prevalent in C02 as in conventional systems. [Pg.199]

Analogous to sulfonyl fluorides, acid fluorides can be prepared in good yields by treating acid chlorides with potassium fluoride in the presence or absence of a solvent.28 Potassium hydrogen fluoride is used in excess for the preparation of 4-methyl- and 4-fluorobenzoyl fluorides 2 from the corresponding acid chlorides 1 by slow distillation from a mixture of both the reactants.29... [Pg.554]

Many biological cells contain degradative enzymes (proteases) that catalyze the hydrolysis of peptide linkages. In the intact cell, functional proteins are protected from these destructive enzymes because the enzymes are stored in cell organelles (lysosomes, etc.) and released only when needed. The proteases are freed upon cell disruption and immediately begin to catalyze the degradation of protein material. This detrimental action can be slowed by the addition of specific protease inhibitors such as phenylmethyl-sulfonyl fluoride or certain bioactive peptides. These inhibitors are to be used with extreme caution because they are potentially toxic. [Pg.262]

Crude Cellulases. The culture filtrate obtained from four-day-old cultures was concentrated by lyophilization. The protease inhibitors, phenyl methyl sulfonyl fluoride (PMSF, 2.3mM) and ethylenediamine-tetraacetic acid (EDTA, 0.2mM) were added to the culture solution and the salt concentration was adjusted to 0.5M with NaCl. After stirring at 4°C for at least 30 min to release cellulases from any enzyme-substrate complex which might have formed, the culture solution was centrifuged... [Pg.266]

Evidence for the tetrahedral intermediate includes a Hammett p constant of+2.1 for the deacylation reaction of substituted benzoyl-chymotrypsins and the formation of tetrahedral complexes with many inhibitors, such as boronates, sulfonyl fluorides, peptide aldehydes, and peptidyl trifluoromethyl ketones. In these last the chemical shift of the imidazole proton is 18.9 ppm, indicating a good low-barrier H-bond, and the pJQ of the imidazolium is 12.1, indicating that it is stabilized by 7.3 kcal mol 1 compared to substrate-free chymotrypsin. The imidazole in effect is a much stronger base, facilitating proton removal from the serine. [Pg.265]

As another alternative to triflates, aryl nonaflates (ONf) are easily prepared from phenol and commerically available perfluorobutane sulfonyl fluoride 243, and used for Pd-catalysed coupling with halides [111]. Aryl nonaflates are more reactive than aryl triflates. / -Iodophcnyl nonaflate (244) gives 245 by chemoselective reaction of the... [Pg.60]

A very reactive halogen atom, such as that of mi acyl or sulfonyl halide, is replaced by fluorine by the action of almost any inorganic fluoride. The most convenient method consists in heating gently a mixture of an acyl or sulfonyl chloride with zinc or antimony fluoride in an apparatus which permits the acyl fluoride to distil as it is formed. The acyl fluoride usually boils about 40° lower than the chloride, and its removal from the reaction mixture results in quantitative yields. Com- plete interchange also can be effected with hydrogen fluoride, but more elaborate equipment is required. Good results have been reported for the synthesis of formyl and acetyl fluorides from mixtures of fonnic or... [Pg.51]

The protease inhibitor cocktail tablets Complete from Roche Molecular Biochemicals, Rotkreuz, Switzerland, Cat. No. 1 697 498. PMSF Phenylmethyl-sulfonyl fluoride, Sigma Cat. No. P-7626. [Pg.140]


See other pages where Sulfonyl fluorides, from is mentioned: [Pg.115]    [Pg.230]    [Pg.102]    [Pg.201]    [Pg.214]    [Pg.93]    [Pg.95]    [Pg.82]    [Pg.133]    [Pg.160]    [Pg.118]    [Pg.93]    [Pg.95]    [Pg.296]    [Pg.300]    [Pg.302]    [Pg.325]    [Pg.337]    [Pg.351]    [Pg.553]    [Pg.253]    [Pg.35]    [Pg.102]    [Pg.158]    [Pg.366]    [Pg.17]   


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Sulfonyl fluoride

Sulfonyl fluorides, from sulfonamides

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