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Manganese carbonyl compounds, anion

The anionic manganese carbonyl complexes [Mn(CO)4(NCS)2]" (729) and [Mn2(CO)e(CNS)4] " (278) are known, the latter containing both bridging—NCS—and terminal—NCS groups (278) [Re(CO)3(NCS)3] is also known (278, 280). However, the most interesting compounds in this category are those prepared by Wojcicki and Farona (279, 280), which are listed in Table XXIV. [Pg.289]

Vanhoye and coworkers [402] synthesized aldehydes by using the electrogenerated radical anion of iron pentacarbonyl to reduce iodoethane and benzyl bromide in the presence of carbon monoxide. Esters can be prepared catalytically from alkyl halides and alcohols in the presence of iron pentacarbonyl [403]. Yoshida and coworkers reduced mixtures of organic halides and iron pentacarbonyl and then introduced an electrophile to obtain carbonyl compounds [404] and converted alkyl halides into aldehydes by using iron pentacarbonyl as a catalyst [405,406]. Finally, a review by Torii [407] provides references to additional papers that deal with catalytic processes involving complexes of nickel, cobalt, iron, palladium, rhodium, platinum, chromium, molybdenum, tungsten, manganese, rhenium, tin, lead, zinc, mercury, and titanium. [Pg.368]

Manganese(III) can oxidize carbonyl compounds and nitroalkanes to carboxy-methyl and nitromethyl radicals [186]. With Mn(III) as mediator, a tandem reaction consisting of an intermolecular radical addition followed by an intramolecular electrophilic aromatic substitution can be accomplished [186, 187). Further Mn(III)-mediated anodic additions of 1,3-dicarbonyl and l-keto-3-nitroalkyl compounds to alkenes and alkynes are reported in [110, 111, 188). Sorbic acid precursors have been obtained in larger scale and high current efficiency by a Mn(III)-mediated oxidation of acetic acid acetic anhydride in the presence of butadiene [189]. Also the nitromethylation of benzene can be performed in 78% yield with Mn(III) as electrocatalyst [190]. A N03 radical, generated by oxidation of a nitrate anion, can induce the 1,4-addition of aldehydes to activated olefins. NOj abstracts a hydrogen from the aldehyde to form an acyl radical, which undergoes addition to the olefin to afford a 1,4-diketone in 34-58% yield [191]. [Pg.290]

Another unusual species is the compound of Mn" and the imidazoyl anion [Mn3(imid-H)5 2imid], made from manganese carbonyl. The colourless crystals are air sensitive, and have a polymeric structure with alternating [MnN ] octrahedra and [MnN4] tetrahedra, bridged by the imidazole ligands. Each octahedral Mn is surrounded by four tetrahedral Mn s and each tetrahedron is surrounded by two other tetrahedra and two octahedra. [Pg.21]

In a similar manner, Jt-allyl complexes of manganese, iron, and molybdenum carbonyls have been obtained from the corresponding metal carbonyl halides [5], In the case of the reaction of dicarbonyl(r 5-cyclopentadienyl)molybdenum bromide with allyl bromide, the c-allyl derivative is obtained in 75% yield in dichloromethane, but the Jt-allyl complex is the sole product (95%), when the reaction is conducted in a watenbenzene two-phase system. Similar solvent effects are observed in the corresponding reaction of the iron compound. As with the cobalt tetracarbonyl anion, it is... [Pg.365]


See other pages where Manganese carbonyl compounds, anion is mentioned: [Pg.279]    [Pg.148]    [Pg.252]    [Pg.252]    [Pg.861]    [Pg.23]    [Pg.162]    [Pg.97]    [Pg.21]    [Pg.565]    [Pg.2521]    [Pg.861]    [Pg.849]    [Pg.746]    [Pg.647]    [Pg.2520]    [Pg.192]    [Pg.206]    [Pg.647]    [Pg.213]    [Pg.166]    [Pg.276]    [Pg.347]    [Pg.180]    [Pg.324]    [Pg.210]    [Pg.1]    [Pg.5]    [Pg.17]    [Pg.261]    [Pg.309]   


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Anionic carbonyls

Carbonyl anions

Carbonylate anions

Carbonylation, manganese

Compounds anionic

Manganese carbonyl carbonylation

Manganese carbonyl compounds, anion derivatives

Manganese carbonyls

Manganese complex compounds anions, carbonyl

Manganese compounds

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