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Manganese dioxide allylic oxidation

In comparison with manganese dioxide, the DDQ reagent has several advantages for the oxidation of allylic alcohols. The quinone method is more reproducible only one equivalent of oxidant need be added and generally fewer side reactions are observed. On the other hand, the workup of DDQ reactions often requires chromatography and in the simpler cases lower isolated yields may be realized. [Pg.248]

Nickel peroxide is a solid, insoluble oxidant prepared by reaction of nickel (II) salts with hypochlorite or ozone in aqueous alkaline solution. This reagent when used in nonpolar medium is similar to, but more reactive than, activated manganese dioxide in selectively oxidizing allylic or acetylenic alcohols. It also reacts rapidly with amines, phenols, hydrazones and sulfides so that selective oxidation of allylic alcohols in the presence of these functionalities may not be possible. In basic media the oxidizing power of nickel peroxide is increased and saturated primary alcohols can be oxidized directly to carboxylic acids. In the presence of ammonia at —20°, primary allylic alcohols give amides while at elevated temperatures nitriles are formed. At elevated temperatures efficient cleavage of a-glycols, a-ketols... [Pg.248]

Oppenauer oxidation, 236 Oxidation of allylic alcohols with dichloro-dicyanobenzoquinone, 248 Oxidation of allylic alcohols with manganese dioxide, 247... [Pg.496]

Manganese dioxide has been nsed to carry out a range of chemical oxidations, and is the reagent of choice for the oxidation of allylic alcohols (Hndlicky 1990). There are several methods for its preparation that may acconnt for differences in its activity. Although it has seldom been exploited for the oxidation of contaminants, two widely different applications have been described ... [Pg.32]

Allylic acetoxylation with palladium(II) salts is well known however, no selective and catalytic conditions have been described for the transformation of an unsubstituted olefin. In the present system use is made of the ability of palladium acetate to give allylic functionalization (most probably via a palladium-x-allyl complex) and to be easily regenerated by a co-oxidant (the combination of benzoquinone-manganese dioxide). In contrast... [Pg.184]

XI. Selective Oxidation of Allylic Alcohols / 244 Manganese dioxide / 244 Dichlorodicyanobenzoquinone / 247 Nickel peroxide / 248... [Pg.269]

Activated manganese dioxide, which is generally used for the selective oxidation of allylic alcohols, permitted the synthesis of an unsaturated (3-keto-arabino-hexopyranosyl)pyridine.13 New oxidative systems for alcohols, involving molecular sieve-assisted... [Pg.232]

Manganese dioxide very soon became a widely used standard oxidant for the transformation of allylic and benzylic alcohols into aldehydes and ketones.4 It offers very mild conditions and is extremely selective for allylic and benzylic alcohols when it is not employed at a high temperature. On the other hand, the work-up of oxidations with M11O2 is very simple, involving just filtration of suspended solid and elimination of solvent. [Pg.290]

The selective oxidation of benzylic and allylic alcohols with active manganese dioxide in the presence of saturated alcohols is normally carried out by stirring or shaking a solution of the alcohol in an organic solvent in the presence of 5-20 equivalents of suspended active M11O2. [Pg.293]

Oxidation of sensitive divinyl alcohol 20 to dienone 4 is achieved by treatment with activated manganese dioxide. Commercially available active Mn02 21 is a synthetic nonstoichiometric hydrated material. This reagent provides mild conditions for oxidation of allylic, propargylic, and benzylic alcohols.10... [Pg.40]

Chemoselective oxidation of the allylic alcohol in triol 865 with manganese dioxide followed by in situ cyclization and oxidation of the resulting 5,6-dihydropyran-2-ol provides the 5,6-dihydropyran-2-one subunit 866 of bryostatin (Equation 349) <20000L2189>. [Pg.613]

Conjugated—a,/)-unsaturated or aromatic—aldehydes are oxidized by manganese dioxide in the presence of one equivalent of sodium cyanide to give an acyl cyanide (Formula C in Figure 17.18) via an intermediate cyanohydrin (B in Figure 17.18), which is also either an allylic or a benzylic alcohol. Alcohols of this kind can be oxidized by a relatively weak oxi-... [Pg.757]

The next important reaction is a Michael addition so the alcohol must first be oxidized to a ketone. As it is an allylic alcohol, it can be oxidized by manganese dioxide. The ring is further flattened as three atoms are now trigonal. But-3-enyl Grignard reagent is next added with Cu(I)... [Pg.874]

Manganese dioxide is a reagent that oxidizes only allylic or benzylic hydroxyl groups to ketones,... [Pg.875]

We can illustrate the synthesis of allylic alcohols from allylic sulfoxides with this synthesis of the natural product nuciferal. We mentioned this route on p. 1257 because it makes use of a heterocyclic allyl sulfide to introduce an alkyl substituent regioselectively. The allyl sulfide is oxidized to the sulfoxide, which is converted to the rearranged allylic alcohol with diethylamine as the thiophile. Nuciferal is obtained by oxidizing the allylic alcohol to an aldehyde with manganese dioxide. [Pg.1268]


See other pages where Manganese dioxide allylic oxidation is mentioned: [Pg.136]    [Pg.136]    [Pg.360]    [Pg.215]    [Pg.244]    [Pg.244]    [Pg.245]    [Pg.246]    [Pg.247]    [Pg.219]    [Pg.128]    [Pg.751]    [Pg.386]    [Pg.131]    [Pg.131]    [Pg.132]    [Pg.133]    [Pg.394]    [Pg.395]    [Pg.424]    [Pg.291]    [Pg.294]    [Pg.445]    [Pg.310]    [Pg.25]    [Pg.86]    [Pg.758]    [Pg.445]   
See also in sourсe #XX -- [ Pg.554 ]




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Allyl oxide

Allylic alcohols oxidation by manganese dioxide

Allylic oxidation

Allylic oxidation with manganese dioxide

Manganese dioxid

Manganese dioxide

Manganese dioxide oxidation

Manganese dioxide, oxidation of allylic

Manganese dioxide, oxidation of allylic alcohols

Manganese oxidation

Manganese-oxidizing

Oxidants manganese

Oxidation allylic alcohol, manganese dioxide

Oxides dioxides

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