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Imidazole, copper

The structure of the parent material in this study—due to its uniqueness with respect to its inequivalent chloride ions both as coordinated and lattice chlorides—represents yet still another example of a solid state copper imidazole material. Others include copper(II) perchlorate salts complexed with amines [10] and copper(I) imidazole complexes based on a cavitand ligand design [11], Copper(I) imidazole complexes have been... [Pg.36]

Fig 3, Representation of copper-imidazole coordination showing the important multiple-scattering pathways. [Pg.311]

COPPER IMIDAZOLE COMPLEXES CATALYZE THE OXIDATIVE POLYMERIZATION OF 2,6-DIMETHYLPHENOL WITH DIOXYGEN... [Pg.444]

The last example to be mentioned deals with the application of coordination compounds attached to polymers and their use as immobilized catalysts. This technique has been used for a long time in organometallic catalysis. Similar reactions with biomimetic catalysts, as with Cu(II) oxidases, are less well known, and a review for polymeric copper imidazole complexes used in oxidative phenol coupling is available. [Pg.256]

Cytokinin oxidase has been partially purified from Phaseolus vulgaris callus tissue [3]. The enzyme activity could be induced by external application of cytokinin and the cytokinin active urea derivative, Thidiazuron [3]. Thidiazuron also inhibited the activity of cytokinin oxidase. It was also shown [4] that the in vitro activity of the enzyme is enhanced when assayed in the presence of copper-imidazole complexes. [Pg.283]

Resorcinol or hydroquinone production from m- or -diisopropylben2ene [100-18-5] is realized in two steps, air oxidation and cleavage, as shown above. Air oxidation to obtain the dihydroperoxide (DHP) coproduces the corresponding hydroxyhydroperoxide (HHP) and dicarbinol (DC). This formation of alcohols is inherent to the autooxidation process itself and the amounts increase as DIPB conversion increases. Generally, this oxidation is carried out at 90—100°C in aqueous sodium hydroxide with eventually, in addition, organic bases (pyridine, imidazole, citrate, or oxalate) (8) as well as cobalt or copper salts (9). [Pg.488]

Despite the weak basicity of isoxazoles, complexes of the parent methyl and phenyl derivatives with numerous metal ions such as copper, zinc, cobalt, etc. have been described (79AHC(25) 147). Many transition metal cations form complexes with Imidazoles the coordination number is four to six (70AHC(12)103). The chemistry of pyrazole complexes has been especially well studied and coordination compounds are known with thlazoles and 1,2,4-triazoles. Tetrazole anions also form good ligands for heavy metals (77AHC(21)323). [Pg.51]

FIGURE 21.18 (a) The Cn site of cytochrome oxidase. Copper ligands inclnde two histidine imidazole groups and two cysteine side chains from the protein, (b) The coordination of histidine imidazole ligands to the iron atom in the heme a center of cytochrome oxidase. [Pg.690]

Copper, hexadecakischloropentakis-, 1,137 Copper, hexakis(imidazole)-dinitrate structure, 1, 53... [Pg.112]

The P-alanyl dipeptides carnosine and anserine (A -methylcarnosine) (Figure 31-2) activate myosin ATPase, chelate copper, and enhance copper uptake. P-Alanyl-imidazole buffers the pH of anaerobically contracting skeletal muscle. Biosynthesis of carnosine is catalyzed by carnosine synthetase in a two-stage reaction that involves initial formation of an enzyme-bound acyl-adenylate of P-alanine and subsequent transfer of the P-alanyl moiety to L-histidine. [Pg.264]

Some other examples of metal-catalyzed substitutions are given in Scheme 11.10. Entries 1 to 3 are copper-catalyzed reactions. Entry 1 is an example of arylation of imidazole. Both dibenzylideneacetone and 1,10-phenanthroline were included as ligands and Cs2C03 was used as the base. Entry 2 is an example of amination by a primary amine. The ligand used in this case was (V,(V-diethyl sal icyl amide. These conditions proved effective for a variety of primary amines and aryl bromides with both ERG and EWG substituents. Entry 3 is an example of more classical conditions. The target structure is a phosphodiesterase inhibitor of a type used in treatment of asthma. Copper powder was used as the catalyst. [Pg.1052]

Organo copper and lithium enolates of cyclic ketones, lactones, and lactams or acyclic ketones are converted with acylimidazoles or imidazole-N-carboxylates into the corresponding / -diketones or / -ketoesters ... [Pg.313]

Table 2 Stereochemistries of copper(II) complexes of imidazole-based chelating ligands. Table 2 Stereochemistries of copper(II) complexes of imidazole-based chelating ligands.
From the standpoint of modeling Type I copper proteins,4,5,59,60 a variety of imidazole-based ligands containing thioether sulfurs and imidazole groups have been synthesized.61,62 The structures and spectroscopic properties of their copper(II) complexes (51)-(53) and (55)-(60) were investigated.65,79-82 To characterize apical copper(II)-thioether bonding, the complex (51) was... [Pg.757]

An imidazole/pyridyl ligand (4) coordinates to a copper(II) center and on deprotonation the imidazole reacts with bis(hexafluoroacetylacetonato)zinc to form a trimeric Cu2Zn species bridged by imidazoles. The zinc ion is in an octahedral coordination environment with Zn-N distances of 2.029(2) A.116... [Pg.1154]

The mixture is then chilled in an ice bath for at least 3 hours, and the olive-brown precipitate of the sparingly soluble copper complex of imidazole derivatives is filtered. The product is washed with about 500 ml. of cold water, suspended while moist (Note 4) in 11. of water, and rendered just acid to litmus by the addition of concentrated hydrochloric acid (about 40 ml.). Hydrogen sulfide is then passed into the suspension, with frequent shaking, until precipitation of the copper is complete (2-3 hours). The precipitate is filtered and extracted with 500 ml. of hot water in two or three portions. The clear, light brown to reddish brown filtrate and washings are boiled for 15 minutes, and then 60 g. (0.26 mole) of picric acid is added with stirring heating is continued until solution is complete. [Pg.95]

Yanez et al. reported the synthesis of miconazole and analogs through a carbenoid intermediate. The process involves the intermolecular insertion of carbe-noid species to imidazole from a-diazoketones with copper acetylacetonate as the key reaction of the synthetic route [11]. [Pg.8]

Whereas pyrrole was reported not to give N/H insertion by ketocarbenoids, such a reaction mode does occur with imidazole Copper-catalyzed decomposition of ethyl diazoacetate at 80 °C in the presence of imidazole gives ethyl imidazol- 1-ylacetate exclusively (93 %) small amounts of a C-alkylated imidazole were obtained additionally under purely thermal conditions 244). N/H insertion also takes place at benzimidazole 245 a). The reaction is thought to begin with formation of an N3-ylide, followed by N1 - C proton transfer leading to the formal N/H insertion product. Diazomalonic raters behave analogously however, they suffer complete or partial dealkoxycarbonylation under the reaction conditions 244) (Scheme 34). N-alkylation of imidazole and benzimidazole by the carbenoids derived from co-diazoacetophenone and 2-(diazoacetyl)naphthalene has also been reported 245 b>. [Pg.183]


See other pages where Imidazole, copper is mentioned: [Pg.754]    [Pg.205]    [Pg.7]    [Pg.37]    [Pg.20]    [Pg.211]    [Pg.168]    [Pg.754]    [Pg.205]    [Pg.7]    [Pg.37]    [Pg.20]    [Pg.211]    [Pg.168]    [Pg.284]    [Pg.128]    [Pg.413]    [Pg.14]    [Pg.48]    [Pg.238]    [Pg.115]    [Pg.228]    [Pg.602]    [Pg.305]    [Pg.284]    [Pg.239]    [Pg.754]    [Pg.755]    [Pg.756]    [Pg.757]    [Pg.760]    [Pg.844]    [Pg.846]    [Pg.876]    [Pg.942]    [Pg.1157]    [Pg.1157]   
See also in sourсe #XX -- [ Pg.157 ]

See also in sourсe #XX -- [ Pg.215 , Pg.217 ]




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Copper -imidazole interactions

Copper complexes, imidazolate-bridged

Copper—imidazole coordination

Imidazole copper complexes

Imidazole-4,5-dicarbaldehyde with 2-aminoethylpyridine and copper chloride

Imidazoles copper catalyzed synthesis

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