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Bidentate complex

Formazan, l-(2-hydroxy-5-suIfophenyl)-3-phenyl-5-(2-carboxyphenyl)-zinc detection, 6, 83 Formazans cobalt complexes dyes, 6, 81 metal complexes bidentate, 6, 78 color photography, 6,111 dyes, 6, 77 tetradentate, 6, 81 tridentate, 6, 79... [Pg.130]

Z)-Enol esters. The stereoselective addition of carboxylic acid to a terminal alkyne linkage is catalyzed by ruthenium complexes. Bidentate phosphine ligands separated by 2, 3, or 4 methylene groups are all effective. [Pg.51]

Scheme 5.18 Proposed structure of metal complexes bidentate bridging Fc-GlyOH-Ca (a), bidentate Fc-GlyOH-Mg (b), mixed bidentate and bidentate bridging Fc-GlyOH-Ln (c), bidentate Fc-GluOH-metal complexes (d), and bidentate bridging Fc-GlyOH-Ln (e)... Scheme 5.18 Proposed structure of metal complexes bidentate bridging Fc-GlyOH-Ca (a), bidentate Fc-GlyOH-Mg (b), mixed bidentate and bidentate bridging Fc-GlyOH-Ln (c), bidentate Fc-GluOH-metal complexes (d), and bidentate bridging Fc-GlyOH-Ln (e)...
Co(en)2(mal)] has been studied at 35°C and / = 0.3 The reaction is catalyzed by H2O, OH , and by the buffer anions employed, and is independent of [I2] but first order in the complex. Bidentate malonate is considerably more active towards electrophilic substitution than the monodentate ligand ... [Pg.210]


See other pages where Bidentate complex is mentioned: [Pg.112]    [Pg.763]    [Pg.578]    [Pg.18]    [Pg.156]    [Pg.9]    [Pg.93]    [Pg.261]    [Pg.197]    [Pg.216]    [Pg.318]    [Pg.105]    [Pg.7]    [Pg.6]    [Pg.18]    [Pg.109]    [Pg.681]    [Pg.7193]    [Pg.1006]    [Pg.474]    [Pg.96]    [Pg.17]    [Pg.223]    [Pg.345]    [Pg.86]   
See also in sourсe #XX -- [ Pg.442 , Pg.443 , Pg.444 , Pg.454 ]




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Alkyne complexes bidentate donor ligands

Application Cross-Coupling with a Bidentate Pd Complex

Bidentate Nitrogen Donor Complexes

Bidentate binuclear bridging complex

Bidentate complex ions, tris

Bidentate ligands cobalt complexes

Bidentate ligands complexes

Bidentate ligands dithiocarbamate complexes

Bidentate ligands, cyanide-bridged complexes

Bidentate ligands, geometry actinide complexes with

Bidentate ligands, molybdenum complexes

Bidentate ligands, mononuclear complexe

Bidentate palladium complexes

Bidentate surface complexes

Bidentate surface complexes inner-sphere

Bidentates

Chromium complexes bidentate

Cobalt complexes bidentate

Complexes Supported by Bidentate Ligands with a Delocalized Bond System

Complexes of Bis-Bidentate B(pz)J

Eight-coordinate actinide complexes with bidentate ligands, geometry

Ethers, protonated bidentate complexes

General Syntheses of Tris(bidentate) Complexes

Indium complexes bidentate

Manganese complexes bidentate

Molybdenum complexes bidentate phosphines

Molybdenum complexes reaction with bidentate ligands

Monomeric eight-coordinate actinide complexes with bidentate ligands

Neutral bidentate complexes

Osmium complexes bidentate

Palladium complexes bidentate diphosphine ligands

Palladium complexes bidentate ligands

Phosphine complexes bidentate, technetium

Rhenium complexes bidentate phosphines

Rhodium complexes bidentate amines

Rhodium complexes bidentate anions

Ruthenium complexes bidentate

Ruthenium complexes bidentate heterocycles

Supramolecular Construction of Chelating Bidentate Ligand Libraries through Hydrogen Bonding Concept and Applications in Homogeneous Metal Complex Catalysis

Tellurium complexes bidentate ligands

Titanium complexes bidentate

Transition Metal Complexes Containing Bidentate Phosphine Ligands

Trigonal twist angle, tris-bidentate complex

Tris bidentate complexes

Tris-bidentate metal complex

Tris-bidentate metal complex conformation

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