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1,10-Phenanthroline structure

Mercury, tris( 1,10-phenanthroline)-structure, 1, 64 Mercury acetate, S, 1066 Mercury azide, 5, 1062 Mercury bromide, S, 1059 Mercury cations Hg ... [Pg.162]

Osmium, quinuclidinetetraoxime-stereochemistry, 44 Osmium, tetrachloronitrido-tetraphenylarsenate stereochemistry, 44 Osmium, tris( 1,10-phenanthroline) -structure, 64 Osmium(II) complexes polymerization electrochemistry, 488 Osmium(III) complexes magnetic behavior, 273 Osmium(lV) complexes magnetic behavior, 272 Osmium(V) complexes magnetic behavior, 272 Osmium(VI) complexes magnetic behavior, 272 Oxaloacetic acid decarboxylation metal complexes, 427 Oxamidoxime in gravimetry, 533 Oxidation-reduction potentials non-aqueous solvents, 27 Oxidation state nomenclature, 120 Oxidative addition reactions, 282 Oxidative dehydrogenation coordinated imines, 455 Oximes... [Pg.596]

Sergienko, V.S., M.A. Porai-Koshits, V.K. Borzunov, and A.B. Illyukhin. 1993. Crystal structure of three VO(02)+ compounds with pyridine-2-carboxylate ions and o-phenanthroline. Structural features of pseudooctahedral vanadium(V) oxoperoxo complexes. Koord. Khim. 19 767-781. [Pg.119]

The extended conjugation in the molecule due to the phenanthrolin structure induces an absorption in the visible range the solution coloration is orange. [Pg.60]

Mercury, tris(l,10-phenanthroline)-structure, 64 Mercury(II) complexes masking agent, 536 Mercury electrodes potential range aqueous solution, 480 Metal carbonyls structure, 16 Metallocenes nomenclature, 126,127 Metallochromic indicators, 554 Metallofluorescent indicators, 558 Metallothionein proteins, 142 Mettd-metal bonding, 137,169 gravimetry, 525 history, 21,23 nomenclature, 122, 123 Metal nitrosyls structure, 16 Metal-phthalein metallochromic indicator, 557 Metal template reactions, 416,433 equilibrium kinetic, 434 thermodynamic, 434 Methane, dichloro-... [Pg.593]

Maumy, M., P. Capdevielle, P.H. Aubert, P. Audebert, and M. Roche (1997). Synthesis and electrochemical properties of salens and poly(salens) where the nitrogens are bridged by a phenanthroline structure. New J. Chem. 21, 621-626. [Pg.434]

A chromium atom forms a neutral complex with carbon monoxide molecules and 1,10-phenanthroline molecules. The structure of the complex is ... [Pg.421]

Figure 3.2. Crystal structures of (upper left) Cu(L-tryptophan)(2,2 bipyridine) CIO 4 (upper right) Cu(L-Tryptophan)(1, l()-phenanthroline)ClO4 . 5H2O and (lower) Cu(L-... Figure 3.2. Crystal structures of (upper left) Cu(L-tryptophan)(2,2 bipyridine) CIO 4 (upper right) Cu(L-Tryptophan)(1, l()-phenanthroline)ClO4 . 5H2O and (lower) Cu(L-...
Azonia substitution at a naphthalene bridgehead position gives the quinolizinium ion (16). Oxonia substitution, elsewhere, forms the 1- and 2-benzopyrylium ions (17) and (18). The two most well-known monoaza systems with three aromatie fused rings are aeridine (19), derived structurally from anthraeene, and phenanthridine (20), an azaphenanthrene. The better-known diaza systems inelude phenazine (21) and 1,10-phenanthroline (22), while systems with three linearly fused pyridine rings are ealled anthyridines, e.g. the 1,9,10-isomer (23). [Pg.3]

Figure 3.34 The structure of PtCl(PEt3)2(phen) showing the monodentate phenanthroline... Figure 3.34 The structure of PtCl(PEt3)2(phen) showing the monodentate phenanthroline...
Iron, tris(hexafluoroacetylacetone)-structure, 1,65 Iron, tris(oxalato)-chemical actinometer, 1,409 photoreduction, 1,471 relief-image-forming systems, 6,125 Iron, tris(l,10-phenanthroline)-absorptiometry, 1,549 racemization, 1,466 solid state, 1,467 structure, 1, 64 lron(III) chloride amino acid formation prebiotic systems, 6,871 Iron complexes acetonitrile. 4,1210 acetylacetone, 2,371 amidines... [Pg.147]

Nickel, tris(l, 10-phenanthroline) racemization, 1,24. 466 solid state, 1, 467 structure, 1,64 Nickel complexes, 5,1-300 acetylacetone alcoholysis, 2, 380 pyridine complexes, 2, 386 solvolysis, 2,379 structure, 2,388 amidines... [Pg.172]

Ligand 92 was readily prepared by reaction of (+)-pinocarvone with 1-phenacylpyridinium iodide. The authors similarly prepared corresponding 5,6-dihydro-1,10-phenanthrolines derived from (+)-pinocarvone and a tetrahydroquinolone (structure 93, [127]) and obtained up to 81% in the palladium-catalyzed test reaction. Chelucci et al. [ 128] reported the synthesis of chiral Ci-symmetric 1,10-phenanthrolines incorporated in asteroid backbone. Structure 94 derived from 5o -cholestan-4-one in Scheme 51, allowed very high yield and up to 96% ee using BSA and tetrabutylammonium fluoride to generate the malonate anion. [Pg.134]


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See also in sourсe #XX -- [ Pg.48 , Pg.49 ]




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1 : 10-Phenanthroline

1 : 10-phenanthrolin

1.10- Phenanthroline ligand structure

1.10- Phenanthrolines crystal structure

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