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Cobalt complexes polynuclear

Intramolecular Electronic Communication in Polynuclear Cobalt Complexes... [Pg.288]

There are still some complex polynuclear cobalt-ammines to which satisfactory constitutional formulas have not yet been assigned. These are, for example, the Fusko salts described by Fremy 1 a class of compounds containing sulphur prepared by Hofmann 2 by the action... [Pg.182]

Polynuclear The dinuclear cobalt complex. Co fCO) (Fig. 15. ) represents a large number of... [Pg.855]

A thorough review of the preparations and physical properties of the polynuclear cobalt complexes is given in Gmelins Handbuch der anor-ganischen Chemie (10). [Pg.84]

In spite of the many modern techniques available to the chemist, the known chemistry of polynuclear cobalt (III) complexes is essentially that deduced by Werner 60 years ago. Since his work, no new polynuclear cobalt complexes have been prepared and characterized and no new reactions uncovered. Modem work in this area is being aimed at attaining a better understanding of the electronic structures inherent in polynuclear ions, which would be of value in a variety of active fields. The chemistry of polynuclear complexes is important in such new areas as synthetic oxygen carriers, electron transfer reactions, and transition metal catalysis. The fact that these new investigations are solidly based on Werner s pioneer investigations testifies to the genius with which he opened up a new area of coordination chemistry, with only the simple chemical techniques available to him. His work in the area of polynuclear cobalt(III) ammine complexes should continue to serve as a model of solid research for some time to come. [Pg.84]

Another type of polynuclear cobalt complex is produced by aerial oxidation of ammoniacal Co(N03)2 solution. This is the / -peroxo-bis penta-amminecobalt(III) ion, [(NH3)5Co-0 0-Co(NH3)5] +. Further oxidation gives the ion [(NH3)5Co-0-0-Co(NH3)5] + which Ebsworth and Weil have shown, by electron-spin resonance, to contain cobalt atoms of identical oxidation number, not Co and Co as previously thought. [Pg.500]

Went, Michael J., Synthesis and Reactions of Polynuclear Cobalt-Alkyne Complexes. 41 69... [Pg.309]

Numerous d cobalt(III) complexes are known and have been studied extensively. Most of these complexes are octahedral in shape. Tetrahedral, planar and square antiprismatic complexes of cobalt(lII) are also known, but there are very few. The most common ligands are ammonia, ethylenediamine and water. Halide ions, nitro (NO2) groups, hydroxide (OH ), cyanide (CN ), and isothiocyanate (NCS ) ions also form Co(lII) complexes readily. Numerous complexes have been synthesized with several other ions and neutral molecular hgands, including carbonate, oxalate, trifluoroacetate and neutral ligands, such as pyridine, acetylacetone, ethylenediaminetetraacetic acid (EDTA), dimethylformamide, tetrahydrofuran, and trialkyl or arylphosphines. Also, several polynuclear bridging complexes of amido (NHO, imido (NH ), hydroxo (OH ), and peroxo (02 ) functional groups are known. Some typical Co(lll) complexes are tabulated below ... [Pg.239]

Ammino-derivatives op Cobalt Salts—Cobaltous Salt Ammines—Cobaltic Salt Ammines—Mononuclear Cobalt-ammines containing One Atom of Cobalt in the Molecule—Cobaltic Salts with Trivalent Cation—Cobalt-ammines Containing Divalent Cation—Cobalt-ammines containing Monovalent Cation—Cobalt-ammines consisting of Non-dissociable Complex— Cobalt-ammines containing Monovalent Anion—Cobalt Salts containing Trivalent Anion—Polynuclear Cobalt-ammines containing Two or more Cobalt Atoms in the Molecule—Cobalt-ammines of Unknown Constitution— Ionisation Metamerism—Polymerisation Isomerism—Valency Isomerism —Co-ordination Position Isomerism—Isomerism due to Asymmetric Cobalt Atoms. [Pg.275]

The coordination chemistry of chromium(III) was first seriously investigated by Pfeiffer at the turn of the century in many ways his studies parallel the work of Werner on cobalt(III). The complexes of chromium(III) are almost exclusively six-coordinate with an octahedral disposition of the ligands. Many are monomeric ((Jeff 3.6 BM), although hydroxy-bridged and other polynuclear complexes are known in which spins on neighbouring chromiums are coupled. [Pg.772]

In this section the methods which have been used to gain structural information are briefly summarized. The term structure is used in this context in its broadest sense, including more qualitative observations concerning the skeleton of the bridging atoms. As a general rule, the hydroxo-bridged polynuclear complexes of chromium(III) and cobalt(III) can be isolated as well-defined crystalline salts and it is therefore quite natural that single-crystal X-ray structure analysis has... [Pg.57]

Structural, thermodynamic, and kinetic studies have shown that hydroxo-bridged polynuclear complexes of (diromium(III), cobalt(III), rhodium(III), and iridium(III) have many general features in common. Structurally, the four metal ions exhibit an almost identical pattern, and in particular the occurrence of many well-characterized oligomers... [Pg.156]


See other pages where Cobalt complexes polynuclear is mentioned: [Pg.99]    [Pg.152]    [Pg.855]    [Pg.195]    [Pg.77]    [Pg.855]    [Pg.195]    [Pg.84]    [Pg.842]    [Pg.633]    [Pg.1408]    [Pg.854]    [Pg.633]    [Pg.30]    [Pg.97]    [Pg.1126]    [Pg.182]    [Pg.122]    [Pg.212]    [Pg.235]    [Pg.131]    [Pg.61]    [Pg.138]    [Pg.164]    [Pg.165]    [Pg.172]    [Pg.789]    [Pg.856]    [Pg.57]    [Pg.99]    [Pg.175]   
See also in sourсe #XX -- [ Pg.400 ]




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