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Halogenated compounds, binuclear

Bimetallic complexes formed using a lanthanide tris (3-diketonate and silver 3-diketonate are useful shift reagents for soft Lewis bases such as alkenes, aromatics, phosphines, and halogenated compounds.Chiral lanthanide tris (3-diketonates of tfc and hfc are used in forming the binuclear reagents. A variety of silver 3-diketonates have been evaluated, but only the silver chelate of 6,6,7,7,8,8,8-heptafluoro-2,2-dimethyl-3,5-octanedione [Ag (fod)] is commercially available. The mixture forms a tetrakis chelate anion to which the silver is ion paired ([Ln (P-dik)4 ]Ag" "). In the bimetallic reagent, the silver binds to the soft Lewis base while the paramagnetic lanthanide ion causes perturbations in the chemical shifts that account for the enantiomeric discrimination. [Pg.1520]

The synthesis of pentacarbonyl rhenium(I) halides, Re(CO)5X, succeeded from simple and complex rhenium halides below 200 atm of CO at 200° C. The compounds are extraordinarily stable and form easily, often quantitatively, from carbon monoxide and rhenium metal in the presence of other heavy metal halides or halogen sources such as CC14. Later we prepared the corresponding carbonyl halides of manganese (67) and technetium (68) from their respective carbonyls. It was found that the corresponding binuclear tetracarbonyl halides [M(CO)4X]2 (M = Mn, Re) could be made by heating the mononuclear M(CO)5X complexes (15, 69), as well as by other methods. [Pg.15]

The more elegant route—which we call for simplicity the method of [1 + l]-addition —may also be used to prepare other binuclear complexes containing either two allyl groups, or one allyl group and one halogen in the bridging positions. The results so far obtained are summarized in Eqs. (9) and (10). Compounds 45-47 are the first allyl-transition metal complexes in which not one metal atom but a dimetal unit is coordinated sandwich-like by two i73-bonded allylic ligands (75, 79). [Pg.160]

In 1982, novel diplatinum(II) diphosphite complexes were reported162. These compounds were readily generated by oxidative addition to the binuclear platinum(II) tet-rakis(diphosphite) complex, [Pt2(pop)4]4 (pop = P205H2 ), with halogens or methyl... [Pg.36]

Although one of the simplest binuclear compounds is [Pt2(/2-S04)4(H20)2]2", the most extensively studied compounds are those of the pyrophosphite (HC P O2-, abbreviated POP. The Pt2n species are made by oxidation of I [PtJ(POP)4] with halogens or CH3I and have the tetrabridged type structure (18-H-XVI). [Pg.1079]


See other pages where Halogenated compounds, binuclear is mentioned: [Pg.811]    [Pg.811]    [Pg.164]    [Pg.412]    [Pg.220]    [Pg.225]    [Pg.299]    [Pg.197]    [Pg.319]    [Pg.487]    [Pg.93]    [Pg.461]    [Pg.480]    [Pg.299]    [Pg.398]    [Pg.299]    [Pg.469]    [Pg.718]    [Pg.5334]    [Pg.5353]    [Pg.104]    [Pg.469]    [Pg.299]    [Pg.487]    [Pg.278]    [Pg.167]    [Pg.34]    [Pg.299]    [Pg.237]    [Pg.365]    [Pg.225]   


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Binuclear

Halogen compounds

Halogenation compounds

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