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Oxygen reaction with alkenes

Methylarsine, trifluoromethylarsine, and bis(trifluoromethyl)arsine [371-74-4] C2HAsF, are gases at room temperature all other primary and secondary arsines are liquids or solids. These compounds are extremely sensitive to oxygen, and ia some cases are spontaneously inflammable ia air (45). They readily undergo addition reactions with alkenes (51), alkynes (52), aldehydes (qv) (53), ketones (qv) (54), isocyanates (55), and a2o compounds (56). They also react with diborane (43) and a variety of other Lewis acids. Alkyl haUdes react with primary and secondary arsiaes to yield quaternary arsenic compounds (57). [Pg.336]

The alkylation of olefinic G-H bonds proceeds when conjugated enones are employed in the ruthenium-catalyzed reaction with alkenes, as shown in Equation (16).1 7 Among the acylcyclohexenes, 1-pivaloyl-l-cyclohexene exhibits a high reactivity and the presence of an oxygen atom at the allylic position in the six-membered ring increases the reactivity of the enones. Some terminal olefins, for example, triethoxyvinylsilane, allyltrimethylsilane, methyl methacrylate, and vinylcyclohexane, are applicable for the alkylation of the olefinic C-H bonds. Acyclic enones also undergo this alkylation. [Pg.217]

Certain electrophilic carbon-carbon and carbon-oxygen double bonds can undergo an addition reaction with alkenes in which an allylic hydrogen is transferred to the... [Pg.399]

From singlet oxygen reaction with silyl enol ethers When a carbon tetrachloride solution of 1-methoxy-l-trimethylsiloxy-l-alkene in the presence of tetraphenylporphyrin and bubbling oxygen is irradiated with a 400-W Na lamp, a-trimethylsilyl peroxyesters were obtained in good yield (equation 11) . ... [Pg.779]

Previous studies have shown that the rate of the O2 ene reaction with alkenes shows neghgible dependence on solvent polarity . A small variation in the distribution of the ene products by changing solvent was reported earlier . However, no mechanistic explanation was offered to account for the observed solvent effects. It is rather difficult to rationahze these results based on any of the currently proposed mechanisms of singlet oxygen ene reactions. Nevertheless, product distribution depends substantially on solvent polarity and reaction temperature only in substrates where both ene and dioxetane products are produced ° . [Pg.854]

Regardless of whether singlet oxygen is formed chemically or photochem-ically, it gives similar products in reactions with alkenes. [Pg.1393]

The ability of nitrous oxide to forma 1,3-dipole (Section 7.2) seems to be of critical importance for the reaction with alkenes. The oxygen transfer proceeds via the 1,3-dipolar cycloaddition mechanism, assuming intermediate formation of a 1,2,3-oxadiazoline complex, the decomposition of which leads to a carbonyl compound ... [Pg.232]

Porphyrin hgands also allow the preparation of Cr complexes. For example, reaction of [(TPP)CrCl] with iodosylbenzene provides [(TPP)Cr(0)Cl], a six-coordinate complex, which is stable in solution for several hours. Its reaction with alkenes involves oxygen atom transfer and yields alcohols and epoxides. Another Cr porphyrin complex is the nitride [(TPP)CrN]. A crystal-stmcture determination has confirmed the square pyramidal structure with a very short bond distance to the apical lutrido ligand (Cr N, 156.5 pm). [Pg.777]

DOT CLASSIFICATION 5.1 Label Oxidizer SAFETY PROFILE Moderately toxic by intraperitoneal route. Severe skin and eye irritant. A powerful oxidizer which has caused many explosions in industry. Potentially explosive reactions with alkenes (above 220°C), ammonia, arjl hydrazine + ether, dimethyl sulfoxide + heat, ethylene oxide, fluorobutane + water, organic materials, phosphorus, trimethyl phosphate. Reacts to form explosive products with ethanol (forms ethyl perchlorate), cellulose + dinitrogen tetraoxide + oxygen (forms cellulose nitrate). Avoid contact with mineral acids, butyl fluorides, hydrocarbons. A drying agent. When heated to decomposition it emits toxic fumes of MgO and Cr. See also MAGNESIUM COMPOUNDS and PERCHLORATES. [Pg.1082]

Synthetically useful precursors of oxygen-substituted carbenes (see Houben-Weyl Vol. E19b. pp 1628-1682) are diazirines (photolysis or thermolysis), a-halogen ethers (base treatment), a-dihalogen ethers (treatment with alkyllithium compounds), and stable carbene complexes of the Fischer type (thermolysis). Only the mechanism-based stereoselectivity and the simple diastcreoselectivity of their reactions with alkenes have been studied to date. [Pg.1056]

Oxazoles are competent dienes for Diels-Alder reactions with alkenes, alkynes, and singlet oxygen however, the initial cycloadduct is unstable and decomposes to yield different products depending on the nature of the dienophile. [Pg.249]


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See also in sourсe #XX -- [ Pg.388 , Pg.389 ]

See also in sourсe #XX -- [ Pg.782 , Pg.783 , Pg.784 , Pg.785 ]

See also in sourсe #XX -- [ Pg.506 , Pg.507 , Pg.508 , Pg.577 , Pg.598 ]

See also in sourсe #XX -- [ Pg.641 , Pg.642 ]




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Alkenes oxygenates

Alkenes reactions with singlet oxygen

Alkenes, reactions with oxygen ions

Electron-rich alkenes, reaction with singlet oxygen

Oxygen with alkenes

Reaction of Alkenes with Singlet Oxygen

Reaction with alkenes

Reaction with oxygen

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