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1 : 10-phenanthrolin

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

Interestingly, the rate constants for Diels-Alder reaction of the ternary complexes with 3.9 are remarkably similar. Only with 2,2 -bipyridine and 1,10-phenanthroline as ligands, a significant change in reactivity is observed. It might well be that the inability of these complexes to adopt a planar geometry hampers the interaction between the copper ion and the dienophile, resulting in a decrease of the rate of the catalysed Diels-Alder reaction. [Pg.84]

Sigel and co-workers" investigated the interaction between the aromatic rings of phenyl carboxylates (Ph-(CFl2)n-C02) and 1,10-phenanthroline in ternary copper(II) complexes. Variation of the number of methylene units between the aromatic ring and the carboxylate group (n=0-5) revealed that the arene - arene interaction is most pronounced for n=l. This interaction is more efficient in a 60% 1,4-... [Pg.88]

Crystal stmctures of complexes of copper(II) with aromatic amine ligands and -amino acids " " and dipeptides" have been published. The stmctures of mixed ligand-copper complexes of L-tryptophan in combination with 1,10-phenanthroline and 2,2 -bipyridine and L-tyrosine in combination with 2,2 -bipyridine are shown in Figure 3.2. Note the subtle difference between the orientation of the indole ring in the two 1,10-phenanthroline complexes. The distance between the two... [Pg.90]

In contrast, investigation of the effect of ligands on the endo-exo selectivity of the Diels-Alder reaction of 3.8c with 3.9 demonstrated that this selectivity is not significantly influenced by the presence of ligands. The effects of ethylenediamine, 2,2 -bipyridine, 1,10-phenanthroline, glycine, L-tryptophan and L-abrine have been studied. The endo-exo ratio observed for the copper(II)-catalysed reaction in the presence of these ligands never deviated more than 2% from the endo-exo ratio of 93-7 obtained for catalysis by copper aquo ion. [Pg.91]

Copolymerization to form polyketones proceeds by the carbonylation of some alkenes in the absence of nucleophiles. Copolymerization of CO and norbornadiene takes place to give the polyketone 28(28]. Reaction of ethylene and other alkenes with CO affords the polyketones 29. The use of cationic Pd catalysts and bipyridyl or 1,10-phenanthroline is important for the polymerization [29-31]. [Pg.516]

Tris(4,7-diphenyl-1,10-phenanthroline) 1.13 (4.6MH2SO4) Red to faint blue... [Pg.949]

Br , citrate, CE, 2,3-dimercaptopropanol, dithizone, EDTA, E, OH , NagP30io, SCN , tartrate, thiosulfate, thiourea, triethanolamine BE4, citrate, V,V-dihydroxyethylglycine, EDTA, E , polyphosphates, tartrate Citrate, CN , 2,3-dimercaptopropanol, dimercaptosuccinic acid, dithizone, EDTA, glycine, E, malonate, NH3, 1,10-phenanthroline, SCN , 820 , tartrate Citrate, V,V-dihydroxyethylglycine, EDTA, E , PO , reducing agents (ascorbic acid), tartrate, tiron... [Pg.1175]

NagPgOio, NH3, 1,10-phenanthroline, SCN , sulfosalicylate, thioglycolic acid, triethanolamine, tartrate... [Pg.1176]

Colorimetric. A sensitive method for the deterrnination of small concentrations of dissolved iron is the spectrophotometric deterrnination of the orange-red tris(1,10-phenanthroline)iron (IT) complex. Other substituted phenanthrolines can be even more sensitive. Only the inon(II) complexes of these Ligands are highly colored. The sample is first treated with an excess of reducing agent. The complexes are stable from pH 2 ndash 9 and analysis preferably is done at about pH 3.5. [Pg.444]

ThioglycoHc acid can be identified by its in spectmm or by gas chromatography. Most of the by-products and self-esterification products are also detected by liquid chromatography, eg, thiodiglycolic acid, dithiodiglycolic acid, linear dimers, and polymers. Iron content can be assayed by the red sensitive complex of 1,10-phenanthroline [66-71-7] and ferrous ion of a mineralised sample. Ferric ion turns an aqueous ammonia solution deep red-violet. [Pg.4]

Technetium-99m coordination compounds are used very widely as noniavasive imaging tools (35) (see Imaging technology Radioactive tracers). Different coordination species concentrate ia different organs. Several of the [Tc O(chelate)2] types have been used. In fact, the large majority of nuclear medicine scans ia the United States are of technetium-99m complexes. Moreover, chiral transition-metal complexes have been used to probe nucleic acid stmcture (see Nucleic acids). For example, the two chiral isomers of tris(1,10-phenanthroline)mthenium (IT) [24162-09-2] (14) iateract differentiy with DNA. These compounds are enantioselective and provide an addition tool for DNA stmctural iaterpretation (36). [Pg.173]

Amorphous (most likely atactic) 3,4-polyisoprene of 94—100% 3,4-microstmcture was prepared with a (C2H 3A1—Ti(0—/ -C Hy) catalyst (11). Crystalline 3,4-polyisoprene containing about 70% 3,4-units and about 30% i7j -l,4-microstmcture was prepared using a catalyst derived from iron acetyl acetonate, trialkyl aluminum, and an amine in benzene (37). However, this polyisoprene contained gel and was obtained in poor yield. Essentially gel-free crystallizable 3,4-polyisoprene of 70—85% 3,4-microstmcture with the remainder being cis-1,4 microstmcture was prepared in conversions of greater than 95% with a water-modified tri alkyl aluminum, ferric acetyl acetonate, and 1,10-phenanthroline catalyst (38). The 3,4-polyisoprene is stereoregular and beheved to be syndiotactic or isotactic. [Pg.4]

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]


See other pages where 1 : 10-phenanthrolin is mentioned: [Pg.421]    [Pg.76]    [Pg.76]    [Pg.82]    [Pg.84]    [Pg.84]    [Pg.88]    [Pg.89]    [Pg.91]    [Pg.102]    [Pg.175]    [Pg.175]    [Pg.528]    [Pg.562]    [Pg.839]    [Pg.887]    [Pg.889]    [Pg.889]    [Pg.891]    [Pg.925]    [Pg.949]    [Pg.949]    [Pg.1162]    [Pg.1164]    [Pg.1165]    [Pg.1175]    [Pg.1175]    [Pg.1175]    [Pg.339]    [Pg.737]    [Pg.742]    [Pg.744]    [Pg.444]    [Pg.189]   
See also in sourсe #XX -- [ Pg.334 ]




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0-Phenanthroline stability constants

1 : 10-Phenanthroline

1 : 10-Phenanthroline

1, 10,-Phenanthroline ligand

1, 10,-Phenanthroline thiourea

1,10-Phenanthroline , complex cation with

1,10-Phenanthroline adducts

1,10-Phenanthroline complexes, lanthanid

1,10-Phenanthroline copper complex

1,10-Phenanthroline metal complexes

1,10-Phenanthroline metal hydrides

1,10-Phenanthroline nickel complexes

1,10-Phenanthroline osmium

1,10-Phenanthroline procedure

1,10-Phenanthroline structure

1,10-Phenanthroline synthesis 3-methyl

1,10-Phenanthroline, 2,4-dichlorozinc complex

1,10-Phenanthroline, 2,9-dimethyl

1,10-Phenanthroline, 4,5-Diazaphenanthrene

1,10-Phenanthroline, chlorination

1,10-Phenanthroline, complex with

1,10-Phenanthroline, complexes with rare metals

1,10-Phenanthroline, epoxidation

1,10-Phenanthroline, formation constants with

1,10-Phenanthroline, hydroperoxide

1,10-Phenanthroline, indicator

1,10-Phenanthroline, photoreactions

1,10-Phenanthroline, reaction with ruthenium

1,10-Phenanthroline, reaction with ruthenium complexes

1,10-Phenanthroline-1-oxide

1,10-Phenanthroline-containing ring

1,10-Phenanthroline-copper complex, tetramethyl

1,10-Phenanthrolines titration indicators

1,10-phenanthroline 4,7-dimethoxy

1,10-phenanthroline ligand complexes with

1,10-phenanthroline ligands materials

1,10-phenanthroline reagents

1,10-phenanthroline type ligands

1,1O-Phenanthrolines

1,lO-Phenanthroline

1.10- Phenanthroline catalysis

1.10- Phenanthroline ligand structure

1.10- Phenanthroline steric effects

1.10- Phenanthroline tetranuclear complexes

1.10- Phenanthroline trinuclear complexes

1.10- Phenanthroline, 2-cyanohydrolysis metal catalysis

1.10- Phenanthroline, 4-hydroxy

1.10- Phenanthroline, N-oxide

1.10- Phenanthroline, reaction with

1.10- Phenanthroline, reaction with complexes

1.10- Phenanthroline, reaction with rhodium complexes

1.10- Phenanthroline-2-carbaldehyde

1.10- Phenanthroline-3-carboxylates

1.10- Phenanthroline-3-carboxylates 4-hydroxy

1.10- Phenanthrolines crystal structure

1.10- Phenanthrolines dipole moments

1.10- Phenanthrolines metal complexes

1.10- Phenanthrolines reduction

1.10- phenanthroline cyanide

1.10- phenanthroline formation constant

1.10- phenanthroline nitration

1.10- phenanthroline spectra

1.10- phenanthroline thermodynamic properties

1.3- Diphenyl phenanthroline oxidation

1.7- Phenanthroline-3,9-dicarboxylates

1.7- Phenanthroline-3,9-dicarboxylates 4,10-dihydroxy

1.7- Phenanthroline-3-carboxylate

1.7- Phenanthroline-3-carboxylate 4-hydroxy

1.7- Phenanthrolines oxidation

1.7- Phenanthrolines reactions

1.7- Phenanthrolines synthesis

10- Aminobenzo phenanthroline

2,2 -Bipyridyl or 1,10-phenanthroline

2,2 -bipyridyl 1,10-phenanthroline

2,2 -biquinolyl phenanthroline

2,4,7,9-Tetraphenyl-1,10-phenanthroline

2,9-Dimethyl-1,10-phenanthrolin

2,9-Diphenyl-1,10- phenanthroline

2,9-dianisyl-l,10-phenanthroline

2- Methyl-l,10-phenanthrolines

2-Methyl-phenanthroline

2-cyano-1,10-phenanthroline

2-cyano-l,10-phenanthroline

2.9- Dimethyl-o-phenanthroline

2.9- dimethyl-4,7-diphenyl-1,10-phenanthroline

3,4,7,8-Tetramethyl-1,10-phenanthroline, ligand

3,4,7,8-Tetramethyl-l,10-phenanthroline

4,7-Dihydroxy-l,10-phenanthroline

4,7-Phenanthroline-5,6-diamine

4-Chloro-l,7-phenanthrolin-10-ol, use tautomerism

4-Hydroxy-l,10-phenanthroline

4-hydroxyphenyl 1,10-phenanthroline

4-methoxyphenyl 1,10-phenanthroline

4.7- Diamino-1,10-phenanthrolines

4.7- Dimethoxy-l,10-phenanthroline

4.7- Phenanthrolines, 1,2,3,4-tetrahydro

4.7- dimethyl-1,10-phenanthroline spectra

4.7- dimethyl-l, 10-phenanthroline

4.7- diphenyl-l,10-phenanthroline

5- Phenyl-l,10-phenanthroline

5-Amino-1,10-phenanthroline, reaction with

5-Chloro-l,10-phenanthroline

5-Methyl-1.10-phenanthroline-iron complex

5-Methyl-l,10-phenanthroline

5-Nitro-1,10-phenanthroline

5-Nitro-l,10-phenanthroline

5.6- Dimethyl-1,10-phenanthroline, reaction

6-Methoxy-4:7-phenanthroline

7- Chlorobenzo phenanthroline

7- benzo phenanthroline

7-Aminobenzo phenanthrolines

8-Bromo-l,7-phenanthroline

Actinide complexes 1,10-phenanthroline

Alkali phenanthroline

Alkyl-substituted 1,10-phenanthrolines

Amines 1,10-phenanthroline

Amines 175 phenanthrolines

Aromatic nitrogenous ligands phenanthroline

Asymmetric catalysis, 1,10-phenanthroline

Bidentate phenanthroline

Biologically active phenanthrolines

Biphenyl phenanthrolines

Bipyridine phenanthroline

Bis phenanthrolines

Cationic palladium complexes, 1,10-phenanthroline

Chiral phenanthrolines, 1,10-phenanthroline

Chromium complexes 1,10-phenanthroline

Chromophores 1,10-phenanthroline

Cobalt complexes phenanthroline

Cobalt-phenanthroline

Complexes of 1,10-Phenanthroline

Copper complex with, 1,10-phenanthroline

Copper phenanthroline

Cu phenanthroline complexes

Cu-phenanthroline

Cupric phenanthroline

Diisopropyl-1,10-phenanthroline

Ethylenediamine 1,10-phenanthroline

Gold complexes phenanthroline

Halogenations 1,10-phenanthroline, 1-oxide

Holmium complexes phenanthroline

II) phenanthroline complexes

Imidazo phenanthrolines

Indium complexes 1,10-phenanthroline

Industrial 1,10-phenanthroline

Intercalation metal-phenanthroline complexes

Intermolecular amination, with phenanthroline ligands

Ionization energy 1,10-phenanthroline

Iridium complexes 1,10-phenanthroline

Iron -1,10-phenanthroline complex charge transfer

Iron 1,10-phenanthroline complex titration indicator

Iron phenanthroline

Iron-phenanthroline complex

L,10-Phenanthroline-5,6-dione

M-Phenanthroline

Manganese complexes phenanthroline

Mercury , phenanthroline complexes

Metal complexes of 1,10-phenanthrolines

Methanol 1,10-phenanthrolines

Methylations 1,10-phenanthroline, 1-oxide

Molybdenum complexes 1,10-phenanthroline

Monodentate, phenanthroline

Naphtho phenanthrolines

NeOCUproine (2,9-Dimethyl-l, 10-phenanthroline

Nitration of 1,10-phenanthrolines

O-Phenanthrolin

O-Phenanthroline

O-Phenanthroline ligands

O-phenanthroline) Complexes

Octaethylporphyrin 1,10-phenanthroline

Of o-phenanthroline

Of phenanthrolines

Ortho-phenanthroline

Ortho-phenanthroline complexes

Osmium complexes 1,10-phenanthroline

Oximes 1,10-phenanthroline

P-Phenanthroline

Palladium complexes, 1,10-phenanthroline

Perchlorates 1,10-phenanthroline

Phenanthridines 1,10-Phenanthroline

Phenanthridines Phenanthrolines

Phenanthrolin-7-ones

Phenanthroline 1,10-Dioxides

Phenanthroline alkylation

Phenanthroline and derivatives

Phenanthroline assay

Phenanthroline chelates

Phenanthroline complexes

Phenanthroline complexes intercalation

Phenanthroline containing ligands

Phenanthroline crown ethers

Phenanthroline derivative chiral

Phenanthroline derivatives

Phenanthroline fluorination

Phenanthroline fluorophore

Phenanthroline groups

Phenanthroline mercury

Phenanthroline monohydrate

Phenanthroline rings

Phenanthroline stacking

Phenanthroline synthesis

Phenanthroline) (trifluoromethyl) (triphenylphosphine)copper

Phenanthroline)methylchloroplatinum(II)

Phenanthroline, reduction

Phenanthroline, transfer hydrogenation

Phenanthroline-1-nitrile, hydration

Phenanthroline-9,10-diones

Phenanthroline-containing polyamine

Phenanthroline-containing rotaxanes

Phenanthroline/Metal

Phenanthrolines

Phenanthrolines 2,9-dimethyl

Phenanthrolines and Fe

Phenanthrolines basicity

Phenanthrolines chromatography

Phenanthrolines physical properties

Phenanthrolines polarography

Phenanthrolines quaternization

Phenanthrolines spectra

Phenanthrolines substitution

Phenanthrolines, 1,10-disubstituted

Phenanthrolines, cycloaddition

Phenyl 1,10-phenanthroline

Photoelectron spectroscopy 1,10-phenanthroline

Platinum complexes 1,10-phenanthroline

Poly bipyridine/phenanthroline polymers

Polypyridines phenanthroline

Quinoxaline phenanthroline

Resolution of the Tris(l,10-phenanthroline)nickel(II) Ion

Ruthenium complexes phenanthroline

Ruthenium phenanthroline derivative

Sepulchrates phenanthroline

Silver complexes 1,10-phenanthroline

Silver-2,9-dimethyl-phenanthroline

Silver-2,9-dimethyl-phenanthroline complex

Spectroscopy 1,10-phenanthroline

Spin crossover iron phenanthroline complexes

Stopped-flow 1,10-phenanthroline

Sulfonation 1,10-phenanthroline

Supramolecular synthesis, 1,10-phenanthroline

Thallium complexes 1,10-phenanthroline

The Chemistry.of Complexes Containing 2,2 -Bipyridyl, 1,10-Phenanthroline

Transition metal catalyst ligands 1,10-phenanthroline

Transition metals phenanthroline complexes

Tris-phenanthroline metal oxidants

Vanadium complexes phenanthroline

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