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Alkyl radical groups

Alkoxy radicals from hydroperoxides can undergo a -scission reaction (eq. 2) to yield an alkyl radical and a ketone. The higher stabiUty of the generated alkyl radical compared to that of the parent alkoxy radical provides the driving force for this reaction, and the R group involved is the one that forms the most stable alkyl radical. [Pg.104]

The effect substitution on the phenolic ring has on activity has been the subject of several studies (11—13). Hindering the phenolic hydroxyl group with at least one bulky alkyl group ia the ortho position appears necessary for high antioxidant activity. Neatly all commercial antioxidants are hindered ia this manner. Steric hindrance decreases the ability of a phenoxyl radical to abstract a hydrogen atom from the substrate and thus produces an alkyl radical (14) capable of initiating oxidation (eq. 18). [Pg.224]

Lumped mechanisms are based on the grouping of chemical compounds into classes of similar stmcture and reactivity. For example, all alkanes might be lumped into a single class, the reaction rates and products of which are based on a weighted average of the properties of all the alkanes present. For example, as shown in Table 1, the various alkanes, CH2 2 > react with OH in a similar manner to form alkyl radicals,. When expressed... [Pg.382]

Physostigmine can be regarded as the methylcarbamate of a -amino-phenol, with an alkyl chain substituent in the o-position, relative to the amino-group. Stevens and Beutel, with this in mind, have prepared substances of the type p-RjRjjN, CO, O. CgHjR. NMCjX, where R is an alkyl radical, c.gi, isopropyl, in either the o or m-positioQ relative to the... [Pg.550]

The hydrogen of the imino-group may be replaced lay acid and alkyl radicals. In the latter case the sodium compound is tieated with an alkyl iodide. [Pg.286]

Alkyl radicals can be obtained by abstraction of a hydrogen atom from an alkyl group by another radical. This method was utilized for the generation of benzyl radicals from toluene with iert-butoxy radical obtained on heating di- er -butyl peroxide. BenzoyP and carboxymethyP radicals have also been obtained by this method. The reaction gives rise to a complex mixture of products and therefore is of rather limited use. [Pg.154]

Michael acceptors and 1,4-addiiion of alkyl group is a normal process. The reaction mechanism is not clear, but the process via addition of alkyl radicals and subsequent elimination of NO radical is one of the possible routes. Recently, several related reactions have been reported, as shown in Eq. 4.76, Eq. 4.77, and Eq. 4.78, in which alkyl radicals are involved. The reaction of trialky Igalliiim compounds with nitrostyrene gives also a similar snbsdtiidon product fEq. 4.791. ° ... [Pg.97]

Conphngs of nitroalkyl radicals v/ith nucleophiles such as CN ,N7, NOj, and other nitrogen nucleophiles provides a nsefiil method for the preparation of nitre compounds v/ith such groups at the cr-posidon. The alkylation of nkromethane v/ith trialkylborane is possible by electrolysis, in which alkyl radicals may be involved fEq. 5.46. ... [Pg.138]

In both compounds there are type (I) azo functions surrounded by alkyl groups and one cyano group. Upon heating, tertiary alkyl radicals and cyano alkyl radicals are formed. These radicals are relatively stable due to hyper conjugation and, in the case of cyano substituted alkyl radicals, to resonance. Therefore, azo groups (I) have a high proneness to thermal decomposition. [Pg.745]

The procedure used in the preceding sections for cyclopropane serves equally well in the analytic determination of the numbers of structure and stereoisomeric compounds which obtain when essentially different radicals of valence one or alkyl radicals are substituted in the basic compound. We have to assume, however, that there is enough information on the basic compound to determine the three groups discussed in Sec. 56. This is certainly the case for the most important basic compounds, benzene and naphthalene. I omit the formulation of rules which are obvious in the preceding example. [Pg.64]

The derivative obtains when the m pairs of H-atoms are replaced by alkyl radicals. The group of the structure formula (Sec. 56) is the direct product (Sec. 27) of m factors... [Pg.68]

In more recent studies, the Barton group has shown that 0-acyl thiohydroxamates (thiohydroxamate esters) are convenient sources of alkyl radicals.490,51,52 Barton s thiohydroxamate ester chemistry is mild and easily executed, and the intermediate organic radicals are amenable to a wide variety of useful transformations. A thiohydroxamate ester of the type 125 (see Scheme 23) can be formed... [Pg.405]

The term primary radical used in this context should be distinguished from that used when describing the substitution pattern of alkyl radicals, t For example, in PS the initiator-derived end groups will account for ca 0.2% of units in a sample of molecular weight 100,000 (termination is mainly by combination). [Pg.49]

The relative importance of the various pathways depends on the alkyl groups (R). The rate constants for scission of groups (R ) from /-aikoxy radicals (RR C-O) increase in the order isopropylalkyl radical is less important when R is methyl than when R is a higher alkyl group, if the pathway to alkylperoxy radicals is dominant, the resultant polymer is likely to have a proportion of peroxy end groups.200 211... [Pg.91]

Thus alkyl radicals do not give unwanted end-group functionality and the kinetics of initiation arc comparatively uncomplicated. However, this situation can be perturbed by substitution at or near the radical center. [Pg.113]

In 1988 a paper by Zard and coworkers4(, reported that xanlhates were a convenient source of alkyl radicals by reversible addition-fragmentation and used the chemistry for the synthesis of a monoadduct to monomer (a maleimide). Many applications of the chemistry in organic synthesis have now been described in papers and reviews by the Zard group.406 407... [Pg.503]

The new reaction appears to be a simple one-step procedure, which is particularly suitable for tertiary alkyl-aryldiazenes for which alternative synthetic routes are less convenient. However, aryl radicals or alkyl radicals in which the carbon-centered radical is bonded to an electron-withdrawing group (COOR, COR, CONR2, CN, S02R, etc.) do not add to diazonium salts or give only poor results (Citterio et al., 1982 c). This indicates that the radical must be a relatively strong nucleophile in order to be able to react with a diazonium ion. [Pg.370]

The photo-Kolbe reaction is the decarboxylation of carboxylic acids at tow voltage under irradiation at semiconductor anodes (TiO ), that are partially doped with metals, e.g. platinum [343, 344]. On semiconductor powders the dominant product is a hydrocarbon by substitution of the carboxylate group for hydrogen (Eq. 41), whereas on an n-TiOj single crystal in the oxidation of acetic acid the formation of ethane besides methane could be observed [345, 346]. Dependent on the kind of semiconductor, the adsorbed metal, and the pH of the solution the extent of alkyl coupling versus reduction to the hydrocarbon can be controlled to some extent [346]. The intermediacy of alkyl radicals has been demonstrated by ESR-spectroscopy [347], that of the alkyl anion by deuterium incorporation [344]. With vicinal diacids the mono- or bisdecarboxylation can be controlled by the light flux [348]. Adipic acid yielded butane [349] with levulinic acid the products of decarboxylation, methyl ethyl-... [Pg.140]

Since simply alkyl radicals possess groups attach to the radical carbon (C ) that have bonds, rotation about those bonds is possible. The internal rotation... [Pg.244]

A hydroxymethyl group can be introduced (ArH —> ArCH20H) by several variations of this method. Alkylation of these substrates can also be accomplished by generating the alkyl radicals in other ways from hydroperoxides and FeS04, from alkyl iodides and H2O2—Fe V from carboxylic acids and lead tetraacetate, or from the photochemically induced decarboxylation of carboxylic acids by iodoso-benzene diacetate. [Pg.933]


See other pages where Alkyl radical groups is mentioned: [Pg.216]    [Pg.258]    [Pg.216]    [Pg.258]    [Pg.173]    [Pg.11]    [Pg.227]    [Pg.222]    [Pg.222]    [Pg.225]    [Pg.115]    [Pg.22]    [Pg.697]    [Pg.701]    [Pg.475]    [Pg.549]    [Pg.293]    [Pg.198]    [Pg.198]    [Pg.63]    [Pg.73]    [Pg.106]    [Pg.14]    [Pg.137]    [Pg.891]    [Pg.915]    [Pg.242]    [Pg.164]    [Pg.115]   
See also in sourсe #XX -- [ Pg.123 ]




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Alkyl groups in free radicals

Alkyl radicals

Free radical stabilization by alkyl groups

Radical alkylation

Vinyl group, alkyl radical stabilization

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