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Propyl alkyl ketones

PRIMARY QUANTUM YIELDS OF PHOTOLYSIS OF THE rt-CsHTCOR-TVPE KETONES AT [Pg.345]

The results of Nicol and Calvert are in agreement with those of other workers (refs. 13, 77, 231). (Comparison should also be made with the appropriate results given in the preceding sections.) [Pg.345]


Calvert has studied the competing type I and II processes in various -propyl alkyl ketones in the gas phase, and finds that increases and decreases as the alkyl group is changed from methyl through r-butyl,359 as might be expected. Perhaps the most dramatic illustration of the inherent inefficiency of type II photoelimination is provided by the fact that at 100°, where the quantum yield for type I cleavage of diethyl ketone is 1.0, the total quantum yield for disappearance of di- -propyl ketone is only 0.58.359... [Pg.98]

CH2=C(OH)C,H7 Some propyl alkyl ketones Some amines... [Pg.1440]

Propyl ketone, butyrate ester Ethyl alkyl ketone Amine... [Pg.221]

In a few instances, not only methyl ketones but other alkyl ketones are degraded to shorter carboxylic acids resulting from halogenation of the methylene group adjacent to the carbonyl and subsequent hydrolysis [103, 160,1172]. The reaction between propiophenone and sodium hypobromite at 22-25 °C gives a 96% yield of benzoic acid [303]. Under similar conditions, 5-butyl-2-butyrylpyridine is converted into 5-butyl-a-picolinic acid in 79% yield [160]. Methyl 3-(a-pyridyl)propyl ketone yields not only the... [Pg.208]

Alkyl ketones (acetone, methyl propyl ketone, etc.) 320-340... [Pg.3]

Although rarely used, lUPAC rules also allow simple ketones to be named as alkyl alkyl ketones. For example, 3-hexanone can also be called ethyl propyl ketone ... [Pg.918]

In ketones having propyl or longer alkyl groups as a carbonyl substituent, intramolecular hydrogen abstraction can be followed by either cleavage of the bond between the a and P carbon atoms or by formation of a cyclobutanol ... [Pg.757]

Although this method is aot a geaeral procedure, bemg specific for ct-nitroketoues, k has several merits to avoid the use of toxic reageuts such as organodn compounds Functionalized ketones have been prepared by this denitration reaction, in which functionalized nitroalkanes are used as alkyl anion synthons For example, 3-nitropropanal ethylene acetal can be used as synthon of the 3-oxo-propyl anion and 1,4-dicarbonyl compounds are prepared, as shovm In Eq 7 88... [Pg.212]

Catalytic asymmetric methylation of 6,7-dichloro-5-methoxy-2-phenyl-l-indanone with methyl chloride in 50% sodium hydroxide/toluene using M-(p-trifluoro-methylbenzyDcinchoninium bromide as chiral phase transfer catalyst produces (S)-(+)-6,7-dichloro-5-methoxy-2-methyl-2--phenyl-l-indanone in 94% ee and 95% yield. Under similar conditions, via an asymmetric modification of the Robinson annulation enqploying 1,3-dichloro-2-butene (Wichterle reagent) as a methyl vinyl ketone surrogate, 6,7 dichloro-5-methoxy 2-propyl-l-indanone is alkylated to (S)-(+)-6,7-dichloro-2-(3-chloro-2-butenyl)-2,3 dihydroxy-5-methoxy-2-propyl-l-inden-l-one in 92% ee and 99% yield. Kinetic and mechanistic studies provide evidence for an intermediate dimeric catalyst species and subsequent formation of a tight ion pair between catalyst and substrate. [Pg.67]

Hydrazones prepared from (S)- l-amino-2-(methoxymethyl)pyrrolidine (242) and acyclic ketones have been shown to undergo deprotonation and alkylation with almost complete asymmetric induction at the a-center (79AG(E)397). The ant alarm pheromone, (+)-(5)-4-methyl-3-heptanone (245), was prepared from the metallated hydrazone of diethyl ketone (243) by alkylation with n-propyl iodide and subsequent cleavage of the crude product via its JV-methyl iodide with acid (Scheme 52). The optical purity of the product was >99%. [Pg.435]

Tertiary alcohols are oxidized in water-dioxane-NaOH to alkoxy radicals, wliich fragmentate to ketone and alkyl radicals R- (Eq. (216) ). The relative rate of cleavage decreases with R in the order sec -butyl > isopropyl > ethyl > propyl > pentyl > isobutyl > methyl 46 8). Likewise, the bisulfite adduct of cyclohexanone is converted in 20% yield to 4-hydroxyhexanoic acid lactone (160) and 3-hydroxycyclohexanoic acid lactone (161) by anodic fragmentation (Eq. (222) ) 469 ... [Pg.130]


See other pages where Propyl alkyl ketones is mentioned: [Pg.221]    [Pg.345]    [Pg.101]    [Pg.221]    [Pg.345]    [Pg.101]    [Pg.1532]    [Pg.149]    [Pg.354]    [Pg.365]    [Pg.45]    [Pg.371]    [Pg.45]    [Pg.1761]    [Pg.239]    [Pg.301]    [Pg.594]    [Pg.419]    [Pg.111]    [Pg.1038]    [Pg.182]    [Pg.305]    [Pg.255]    [Pg.26]    [Pg.492]    [Pg.79]    [Pg.24]    [Pg.85]    [Pg.1136]    [Pg.224]    [Pg.151]    [Pg.887]    [Pg.899]    [Pg.260]    [Pg.1033]    [Pg.474]    [Pg.22]    [Pg.111]   


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Alkylated ketone

Alkylation ketone

Ketones alkyl

Propyl ketone

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