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Acyl fluorides from carboxylic acids

Monocationic acyl ions are readily prepared as persistent species in solutions of low nucleophile strength.68 These acyl ions have been thoroughly characterized by IR and NMR spectroscopy, and several acyl ion salts have been characterized by X-ray crystallography. The monocationic acyl ions are often prepared in situ from carboxylic acids, esters, or anhydrides, by the action of a strong Brpnsted acid, or the ions can be prepared from ionization of an appropriate acid halide with a strong Lewis acid. Both methods have been used to prepare acyl-centered dications, some of which can be considered distonic superelectrophiles. As described previously, dicarboxylic acids cleave to the bis-acyl ions in superacid (FSChH-SbFs) provided that the acyl cations are separated by at least three methylene units (eq 54).55 The first bis-acyl dications were reported by Olah and Comisarow, being prepared by the reactions of dicarboxylic acid fluorides with superacidic SbFs (eq 72).69... [Pg.269]

A considerable amount of research has been concerned with the nature of the electrophiles that are involved in Friedel-Crafts acylation reactions. We will summarize the main points. Acyl halides and carboxylic acid anhydrides have been known, for many years, to form stable complexes with a variety of acid catalysts. A well-defined product is formed between acetyl fluoride and boron trifluoride at low temperatures. Analytical and conductivity data characterized the material as acetylium tetrafluoroborate, and this was further confirmed by IR measurements. In the system acetyl chloride-aluminum chloride the acetylium ion can be differentiated from the donor-acceptor complex involving the carbonyl group by means of their IR carbonyl stetching frequencies. A number of other acyl fluorides have been shown to form well-defined acylium salts by interaction with a number of metal fluorides. Acylium salts can also be prepared from acyl chlorides by means of metathetical reactions involving anhydrous salts such as silver hexafluoroantimonate. As well as characterization by means of IR spectroscopy, acylium salts have been studied in non-nucleophilic solvents by NMR spectroscopy. The NMR data for the ben-... [Pg.734]

These reactions are most important for the preparation of acyl fluorides. " Acyl chlorides and anhydrides can be converted to acyl fluorides by treatment with polyhydrogen fluoride-pyridine solution" or with liquid HF at — 10°C. Formyl fluoride, which is a stable compound, was prepared by the latter procedure from the mixed anhydride of formic and acetic acids. Acyl fluorides can also be obtained by reaction of acyl chlorides with KF in acetic acid or with DAST. Carboxylic esters and anhydrides can be converted to acyl halides other than fluorides by the inorganic acid halides mentioned in 10-77, as well as with PhsPXa (X = Cl or but this is seldom done. Halide exchange can be carried out in a... [Pg.524]

Phosphoramidites (89), derived from enamines, react with carboxylic acids in an irreversible manner because of the low basicity of the eliminated enamine. The anhydrides (90) may also conveniently be obtained from enol phosphites. Reactions of (89) with phenol were also studied and the kinetics found to be characteristic for bimolecular processes . In contrast to other carboxylic acid halides, acyl fluorides give tervalent phosphorus fluorides with tervalent esters (Scheme 7). ... [Pg.92]

N-Formylsaccharin 102, an easily accessible crystalline compound, has been employed as an efficient CO source in Pd-catalyzed fluorocarbonyl-ation of aryl halides 103 to afford the corresponding acyl fluorides 104 (13OL5370). Reagent KF is expected to serve as a dual role not only as a nucleophile for Pd-catalyzed carbonylation but also as an activator for CO generation from 102. The reactions use a near-stoichiometric amount of the CO source (1.2 eq) and tolerate diverse functional groups. The acyl fluorides 104 can be readily transformed into various carboxylic acid derivatives such as carboxylic acid, esters, thioesters, and amides in a one-pot procedure. [Pg.293]

The carboxylic acid fluorides are soluble in HF, and the solutions of alkanoic acid fluorides with more than four carbon atoms are conductive. The yield of the perfluoroalkanoic acid fluoride decreases with increasing chain length of the carboxylic acid fluoride fluorinated, from as much as about 80% for acetyl fluoride to 10% for perfluorooctanoyl fluoride [34]. The yield is lower when an acyl chloride is fluorinated instead of an acyl fluoride, but aeyl chlorides are more readily available than acyl fluorides [48]. [Pg.33]


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Acid fluorides

Acyl fluorides

Acyl fluorides carboxylic acids

Carboxylic acid fluorides

Carboxylic acids acylation

Carboxylic acids, from acyl

From carboxylic acids

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