Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Allyl oxide

With higher alkenes, three kinds of products, namely alkenyl acetates, allylic acetates and dioxygenated products are obtained[142]. The reaction of propylene gives two propenyl acetates (119 and 120) and allyl acetate (121) by the nucleophilic substitution and allylic oxidation. The chemoselective formation of allyl acetate takes place by the gas-phase reaction with the supported Pd(II) and Cu(II) catalyst. Allyl acetate (121) is produced commercially by this method[143]. Methallyl acetate (122) and 2-methylene-1,3-diacetoxypropane (123) are obtained in good yields by the gas-phase oxidation of isobutylene with the supported Pd catalyst[144]. [Pg.38]

An example of this reaction is the reaction of cyclohexene with t-butyl perbenzoate, which is mediated by Cu(I). " The initial step is the reductive cleavage of the perester. The t-butoxy radical then abstracts hydrogen from cyclohexene to give an allylic radical. The radical is oxidized by Cu(II) to the carbocation, which captures benzoate ion. The net effect is an allylic oxidation. [Pg.724]

Crystals was deposited wheu the oil was cooled in a freezing miiiore. The oil coulains no oxypeu, and therefore uo allyl oxide. Wheu fractionated under a pressure of Jfi mm., lour main fractions were ohlaiond. Frn-olion 1 ffi per cent.) consisted of alJyl-)>ropyl diflulphide, a... [Pg.92]

Now that the allylic oxidation problem has been solved adequately, the next task includes the introduction of the epoxide at C-l and C-2. When a solution of 31 and pyridinium para-tolu-enesulfonate in chlorobenzene is heated to 135°C, the anomeric methoxy group at C-l 1 is eliminated to give intermediate 9 in 80% yield. After some careful experimentation, it was found that epoxy ketone 7 forms smoothly when enone 9 is treated with triphenyl-methyl hydroperoxide and benzyltrimethylammonium isopropoxide (see Scheme 4). In this reaction, the bulky oxidant adds across the more accessible convex face of the carbon framework defined by rings A, E, and F, and leads to the formation of 7 as the only stereoisomer in a yield of 72%. [Pg.462]

All that remains before the final destination is reached is the introduction of the C-l3 oxygen and attachment of the side chain. A simple oxidation of compound 4 with pyridinium chlorochro-mate (PCC) provides the desired A-ring enone in 75 % yield via a regioselective allylic oxidation. Sodium borohydride reduction of the latter compound then leads to the desired 13a-hydroxy compound 2 (83% yield). Sequential treatment of 2 with sodium bis(trimethylsilyl)amide and /(-lactam 3 according to the Ojima-Holton method36 provides taxol bis(triethylsilyl ether) (86 % yield, based on 89% conversion) from which taxol (1) can be liberated, in 80 % yield, by exposure to HF pyridine in THF at room temperature. Thus the total synthesis of (-)-taxol (1) was accomplished. [Pg.670]

ALLYLIC OXIDATION WITH HYDROGEN PEROXIDE-SELENIUM DIOXIDE frans-PINOCARVEOL... [Pg.25]

Allylic oxidation, 25 Aluminum chloride, 28 Amine, dnsopropyl- [2-Propanamine, Af-(l-methylethyl)-], 36 Ammonium, (methoxycarbonylsulfamoyl)-tnethyl-, hydroxide [Ethanaminium, W.W-diethyl-A-t [ (methoxycarbonyl)-amino] sulfonyl] -, hydroxide, inner salt], 41... [Pg.138]

Dipyridiue-chromium(VI) oxide2 was introduced as an oxidant for the conversion of acid-sensitive alcohols to carbonyl compounds by Poos, Arth, Beyler, and Sarett.3 The complex, dispersed in pyridine, smoothly converts secondary alcohols to ketones, but oxidations of primary alcohols to aldehydes are capricious.4 In 1968, Collins, Hess, and Frank found that anhydrous dipyridine-chromium(VI) oxide is moderately soluble in chlorinated hydrocarbons and chose dichloro-methane as the solvent.5 By this modification, primary and secondary alcohols were oxidized to aldehydes and ketones in yields of 87-98%. Subsequently Dauben, Lorber, and Fullerton showed that dichloro-methane solutions of the complex are also useful for accomplishing allylic oxidations.6... [Pg.85]

Alkenes can be aminated in the allylic position by treatment with solutions of imido selenium compounds R—N—Se=N—R. The reaction, which is similar to the allylic oxidation of alkenes with Se02 (see 14-4), has been performed with R = t-Bu and R=Ts. The imido sulfur compound TsN=S=NTs has also been used... [Pg.782]

The Pacman catalyst selectively oxidized a broad range of organic substrates including sulfides to the corresponding sulfoxides and olefins to epoxides and ketones. However, cyclohexene gave a typical autoxidation product distribution yielding the allylic oxidation products 2-cyclohexene-l-ol (12%) and 2-cyclohexene-1-one (73%) and the epoxide with 15% yield [115]. [Pg.98]

It has been shown recently that the 1 1 complexes between Hg(II) and a number of olefins are themselves subject to allylic oxidation by Hg(Il) at 80 °C. Typical stoichiometry is... [Pg.338]

In the following scheme, an oxidation pathway for propane and propene is proposed. This mechanism, that could be generalized to different hansition metal oxide catalysts, implies that propene oxidation can follow the allylic oxidation way, or alternatively, the oxidation way at C2, through acetone. The latter easily gives rise to combustion, because it can give rise to enolization and C-C bond oxidative breaking. This is believed to be the main combustion way for propene over some catalysts, while for other catalysts acrolein overoxidation could... [Pg.488]

When preparing allyl oxide according to this method, a violent detonation interrupted the operation. It was explained by the alcohol polymerisation catalysed by sulphuric acid. There was a less convincing explanation, which is peroxidation in the allylic position of alcohol or the ether obtained. Indeed, there should have been prolonged storage for this peroxidation. [Pg.255]

The activity of the FePeCli6-S/tert-butyl hydroperoxide (TBHP) catalytic system was studied under mild reaction conditions for the synthesis of three a,p-unsaturated ketones 2-cyclohexen-l-one, carvone and veibenone by allylic oxidation of cyclohexene, hmonene, and a-pinene, respectively. Substrate conversions were higher than 80% and ketone yields decreased in the following order cyclohexen-1-one (47%), verbenone (22%), and carvone (12%). The large amount of oxidized sites of monoterpenes, especially limonene, may be the reason for the lower ketone yield obtained with this substrate. Additional tests snggested that molecular oxygen can act as co-oxidant and alcohol oxidation is an intermediate step in ketone formation. [Pg.435]

The heterogeneous catalytic system iron phthalocyanine (7) immobilized on silica and tert-butyl hydroperoxide, TBHP, has been proposed for allylic oxidation reactions (10). This catalytic system has shown good activity in the oxidation of 2,3,6-trimethylphenol for the production of 1,4-trimethylbenzoquinone (yield > 80%), a vitamin E precursor (11), and in the oxidation of alkynes and propargylic alcohols to a,p-acetylenic ketones (yields > 60%) (12). A 43% yield of 2-cyclohexen-l-one was obtained (10) over the p-oxo dimeric form of iron tetrasulfophthalocyanine (7a) immobilized on silica using TBHP as oxidant and CH3CN as solvent however, the catalyst deactivated under reaction conditions. [Pg.436]


See other pages where Allyl oxide is mentioned: [Pg.20]    [Pg.122]    [Pg.38]    [Pg.12]    [Pg.12]    [Pg.12]    [Pg.92]    [Pg.461]    [Pg.789]    [Pg.25]    [Pg.27]    [Pg.204]    [Pg.221]    [Pg.329]    [Pg.346]    [Pg.212]    [Pg.194]    [Pg.487]    [Pg.488]    [Pg.435]    [Pg.435]   
See also in sourсe #XX -- [ Pg.255 , Pg.264 ]

See also in sourсe #XX -- [ Pg.92 ]




SEARCH



3-Carene allylic oxidation

Abietic acid allylic oxidation

Additions of Allyl- and Benzyltrimethylsilanes to Aromatic Heterocyclic N-Oxides

Adenosine, 6-N- allylic oxidation

Alcohols, allylic with chiral oxidants

Alkenes allylic oxidation

Allyl acetates oxidation

Allyl additions sulfoxides, phosphine oxides

Allyl alcohol from propylene oxide

Allyl alcohol, and oxidation

Allyl alcohols oxidation

Allyl alcohols oxidative rearrangement

Allyl alcohols oxidative rearrangement with pyridinium

Allyl alcohols via oxidation of allylstannanes

Allyl arenes, oxidative transformation

Allyl carbonates oxidation

Allyl carbonates oxidative rearrangement

Allyl chloride oxidation

Allyl chloride regioselective oxidation

Allyl complexes oxidative addition

Allyl esters regioselective oxidation

Allyl ethers oxidation

Allyl ethers regioselective oxidation

Allyl glycidyl ether copolymer, propylene oxide

Allyl halides, oxidative addition

Allyl iodide, oxidation, yield

Allyl methacrylate, oxidation

Allyl oxidative carbonylation

Allyl phenols, oxidation

Allyl phosphine oxides

Allyl radicals oxidation

Allyl selenide, oxidation

Allyl sulphides, oxidation

Allylation Wacker oxidation

Allylic C-H bonds oxidation

Allylic C-H oxidation

Allylic Oxidation and the Metabolism of Marijuana

Allylic Oxidation of Olefins

Allylic alcohols nitrile oxide cycloadditions

Allylic alcohols oxidation by manganese dioxide

Allylic alcohols oxidation, mechanistic study

Allylic alcohols rearrangement during oxidation

Allylic and benzylic oxidations

Allylic carbon oxidation

Allylic carbons, electrochemical oxidation

Allylic compounds microbial oxidation

Allylic compounds oxidation

Allylic compounds oxidations, copper®) chloride

Allylic esters, oxidation

Allylic ethers with nitrile oxides

Allylic ligand oxidation

Allylic oxidation

Allylic oxidation

Allylic oxidation 12-membered ring

Allylic oxidation 14-membered ring structures

Allylic oxidation Kharasch-Sosnovsky reaction

Allylic oxidation mechanism

Allylic oxidation metallation

Allylic oxidation molecular sieves

Allylic oxidation of alkenes

Allylic oxidation with Collins reagent

Allylic oxidation with SeO

Allylic oxidation with manganese dioxide

Allylic oxidation with rearrangement

Allylic oxidation, -2-oxazoline

Allylic oxidation, of alkenes, with

Allylic oxidations alkenes, manganese acetate

Allylic phosphine oxides

Allylic phosphine oxides lithiated

Allylic phosphine oxides y-selective conjugate addition to cyclic enones

Allylic photo-sensitized oxidation

Allylic position, oxidation

Allylic reactions Oxidation

Allylic systems oxidation

Amination oxidative allylic

Amine oxides allyl, -sigmatropic rearrangements

Amine oxides allylic, sigmatropic rearrangement

Amine oxides, allylic, rearrangements

Asymmetric allylic oxidation

Asymmetric reactions allylic oxidation

Avermectin allylic oxidation

Benzotriazoles allylic alcohol oxidation

Bis allylic oxidation

Carbonyl compounds allylic oxidation

Catalytic Asymmetric Synthesis Sharpless Oxidations of Allylic alcohols

Cephem dioxides allylic oxidation

Chemoselective allylic oxidation

Chiral allylic C-H oxidation

Cholesteryl benzoate allylic oxidation

Chromium hexacarbonyl allylic oxidation

Chromium oxidants allylic oxidation

Chromium reagents allylic oxidation

Chromium trioxide allylic oxidation

Cobalt complexes allylic oxidation

Cobalt triacetate allylic oxidation

Collins allylic oxidation

Collins allylic oxidation in -dictyolene synthesis

Copolymer of propylene oxide and allyl

Copper complexes allylic oxidation

Cumulative Subject allylic oxidation

Cyclic allylic amines, oxidation

Cycloalkenes allylic oxidation

Cyclohexene allylic oxidation

Cyclohexene, 1-methylacetoxylation allylic oxidation

Diacyl peroxides allylic oxidation

Dipentene allylic oxidation

Double bond, oxidation allylic

Drimenyl acetate allylic oxidation

Enantioselective reduction allylic oxidation

Enones allylic oxidation

Epichlorohydrin-ethylene oxide-allyl

Epichlorohydrin-ethylene oxide-allyl glycidyl ether terpolymer

Ethers, allyl vinyl oxidation

Fluorous allylic oxidation

Free Radical Oxidation of an Allylic Position

Furan, 2,5-dimethoxy-2,5-dihydroSubject allylic oxidation

Geraniol, allylic oxidation

Geranyl acetate allylic oxidation

Geranyl acetate allylic oxidative rearrangement

Glycyrrhetinic acid allylic oxidation

Grignard reagent conjugate addition, allyl oxide

Halogen oxides, allylic

Homo-allylic alcohols oxidation

Hydrogen peroxide allylic oxidation

Iridium allylic oxidation

Iridium chloride allylic oxidation

Iron complexes allylic oxidation

Jones oxidation allylic alcohols

KHARASH - SOSNOVSKY Allylic oxidation

Ketones allylation-oxidations, 1,4-diketone synthesis, palladium

Ketones allylic oxidation

Lead tetraacetate allylic oxidation

Manganese complexes allylic oxidation

Manganese dioxide allylic oxidation

Manganese dioxide, oxidation of allylic

Manganese dioxide, oxidation of allylic alcohols

Manganese triacetate allylic oxidation

Mercury acetate allylic oxidation

Mercury oxide allylic oxidation

Metal acetates allylic oxidation

Metal-substituted Molecular Sieves as Catalysts for Allylic and Benzylic Oxidations

Methylcyclohexene, allylic oxidation

Methylene groups ketones, oxidation, allylic

Nerol, allylic oxidation

Neryl acetate allylic oxidation

Nitrosyl fluoride allylic oxidation

Oxidants heteroatomic nucleophiles, allylic derivatives

Oxidation allyl

Oxidation allylic alcohol epoxidation

Oxidation allylic alcohol isomerization

Oxidation allylic alcohol, manganese dioxide

Oxidation allylic alcohols

Oxidation allylic stannanes

Oxidation allylic, heterogeneous catalysis

Oxidation at the Double Bond of Allylic Alcohols

Oxidation of allyl acetate

Oxidation of allyl alcohols

Oxidation of allylic alcohols

Oxidation of tertiary allylic alcohol

Oxidation reactions allylic derivatives

Oxidation reactions allylic oxygenation

Oxidation reactions benzyl/allyl halide preparation

Oxidations at Allylic Positions

Oxidative Addition of Allylic Compounds

Oxidative Allylic Aminations

Oxidative Allylic Oxygenation and Amination

Oxidative addition allylation

Oxidative addition allylic alcohol derivatives

Oxidative addition allylic compounds

Oxidative addition of allyl halides

Oxidative addition of allylic substrates

Oxidative of allyl acetate

Oxygen allylic oxidation

Oxygenation oxidative allylic

Palladium acetate allylic oxidation

Palladium allylic oxidation

Palladium bis allylic oxidation

Palladium chloride allylic oxidation

Palladium-catalyzed Allylic Oxidations

Peroxides allylic oxidation

Peroxides, bis allylic oxidation

Peroxy acids allylic oxidation

Peroxy esters allylic oxidation

Peroxyphosphates allylic oxidation

Phosphine oxide allylic bromides

Progesterone allylic oxidation

Propene allylic oxidation

Propylene allylic oxidation

Propylene oxide to allyl alcohol

Pyrazole, 3,5-dimethylchromium trioxide complex allylic alcohol oxidation

Pyrazole, 3,5-dimethylchromium trioxide complex allylic oxidation

Pyridinium chlorochromate allylic oxidation

Pyridinium dichromate allylic oxidation

Reactions Involving Oxidative Addition of Allylic Electrophiles

Rearrangement of Allylic Sulfoxides. Selenoxides and Amine Oxides

Rhodium acetate allylic oxidation

Rhodium allylic oxidation

Rhodium allylic oxidation catalyst

Rhodium chloride allylic oxidation

Ruthenium chloride, bis oxidation allylic alcohols

Ruthenium dioxide oxidation, allylic alcohols

Selective oxidation of allylic alcohols

Selective oxidation of propene—the allyl radical

Selenides, allyl oxidation

Selenium dioxide allylic oxidation

Selenium dioxide allylic oxidation with

Selenylation allylic oxidation

Sharpless asymmetric epoxidation of allylic amine oxides

Sharpless oxidation allylic alcohols

Sigmatropic Rearrangements of Allyl Amine Oxides The Meisenheimer Rearrangement

Silver acetate allylic oxidation

Steroids allylic oxidation

Subject allylic oxidation

Subject in allylic oxidation

Succinimide, N-bromoactivator allylic oxidation

Sulfides, allyl oxidation

Sulfides, allylic chemoselective oxidation

Synthesis allylic oxidation

TREIBS Allylic oxidation

Terpenes, allylic oxidation

Tertiary allylic alcohols, oxidative

Tertiary allylic alcohols, oxidative Collins reagent

Tertiary allylic alcohols, oxidative rearrangement

Thallium triacetate allylic oxidation

Tiglic acid allylic oxidation

Treibe’s reaction allylic oxidation

Tri terpenes allylic oxidation

Triterpenes allylic oxidation

Vanadyl acetylacetonate allylic oxidation

Verbenol allylic oxidation

© 2024 chempedia.info