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Heterometallic complexes, transition metal

Homometallic and Heterometallic Transition Metal Allenyl Complexes Synthesis,... [Pg.466]

Indium and gallium coordination compounds containing phosphine ligands have recently aroused interest for their widespread application as intermediates in the preparation of the Group 13 - Group 14 semiconductors [4], Since the early reports about compounds with transition metal-indium bonds [51, relatively little research has been reported in this field. However there is a growing interest in the coordination chemistry and structural features of heterometallic indium [6] and gallium complexes [7] which are also attractive as potential precursors of new materials with particular properties. [Pg.200]

Heterometallic alkali metal phosphide complexes with transition metals have also been reported. The complex [(Cy2P)3Hf(ju.-PCy2)2Li (DME)] results from the reaction of LiPCy2 with HfCl4(THF) (98). This complex persists in solution. Jones et al. have reported the synthesis and reactivity toward a range of electrophiles of a series of lithium di-t-butylphosphido(alkyl)cuprates [RCu(PBu2)Li] (R = Me,... [Pg.65]

Doherty, Simon, Corrigan, John P., Carty, Arthur J., and Sappa, Enrico, Homometallic and Heterometallic Transition Metal Allenyl Complexes Synthesis, Structure, and Reactivity. [Pg.321]

The first tt complexes of 1,3-diynes were reported by Greenfield. Shortly thereafter, Tilney-Bassett described the first heterometallic derivatives. This area has grown steadily since these initial reports and many complexes of this type are now known. Diyne complexes are often simply alkyne-substituted analogues of conventional jr-alkyne complexes. Indeed, transition metal compounds that form -complexes with mono-alkynes can be expected to form complexes with diynes. However, the thermal sensitivity of terminal diynes, especially 1,3-butadiyne, may limit the application of routine reaction conditions in some cases. Further coordination of the ynyl ligand by additional metal fragments is usually determined by the reagent stoichiometry and by steric effects. [Pg.102]

Replacement of the Au(PR3)C1 molecule by the AuC12 anion in reactions with transition metal anions gives rise to linear trinuclear Au-M-Au heterometallic complexes, as in the reactions (234)... [Pg.332]

Methods of stage-wise introduction of transition metals into Schiff polybases allow us to obtain heterometallic complexes with the controlled distribution of such metals (Table 7), e.g., according to the following scheme [22a, 77c] ... [Pg.91]

The chemistry of these heterometallic compounds based on the M—O—motif covers main-group elements, transition metals, and lanthanides. The generation of the M—O—motif (21) requires the successful s)mtheses and stabilization of well-defined hydroxides. A considerable effort has been ongoing to stabilize terminal hydroxides of main-group and transition metals (22). Recently, a number of well-defined hydroxides of main-group and transition metals 1-11 (Chart 1) have been made (23-35) by careful hydrolysis of suitable precursors. Some of these hydroxides were used as building blocks to synthesize heterometallic complexes with M—O—backbones by reaction with catalyti-cally active transition metal complex precursors. [Pg.7]

Synthons for Heterometallic Complexes Main-Group and Transition Metal Hydroxides... [Pg.7]

CHART 1 Synthons for heterometallic complexes main-group and transition metal hydroxides ". ... [Pg.8]


See other pages where Heterometallic complexes, transition metal is mentioned: [Pg.172]    [Pg.44]    [Pg.61]    [Pg.72]    [Pg.67]    [Pg.287]    [Pg.683]    [Pg.610]    [Pg.630]    [Pg.696]    [Pg.152]    [Pg.230]    [Pg.213]    [Pg.473]    [Pg.343]    [Pg.1085]    [Pg.87]    [Pg.96]    [Pg.139]    [Pg.357]    [Pg.201]    [Pg.78]    [Pg.167]    [Pg.5]    [Pg.24]    [Pg.34]    [Pg.57]    [Pg.394]    [Pg.344]   


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