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Tellurium complexes preparation

No commercial application of this compound is known. It is used in preparing certain tellurium complexes and tellurates. [Pg.914]

The coordinatively unsaturated aryl tellurium halides interact with electron-donor ligands to form complexes. The aryl tellurium halides prepared from diphenyl ditellurium and halogens were used in situ. Thiourea, selenourea (X = Cl, Br)3, tetramethylthio- and... [Pg.247]

Early catalysts for acrolein synthesis were based on cuprous oxide and other heavy metal oxides deposited on inert siHca or alumina supports (39). Later, catalysts more selective for the oxidation of propylene to acrolein and acrolein to acryHc acid were prepared from bismuth, cobalt, kon, nickel, tin salts, and molybdic, molybdic phosphoric, and molybdic siHcic acids. Preferred second-stage catalysts generally are complex oxides containing molybdenum and vanadium. Other components, such as tungsten, copper, tellurium, and arsenic oxides, have been incorporated to increase low temperature activity and productivity (39,45,46). [Pg.152]

Tellurium pseudohaUdes, such as the dicyanide [14453-24-8] Te(CN)2, the dithiocyanate [83543-04-8] Te(SCN)2, and thiourea complexes with Te(SCN)2, have been prepared. These are similar to the haUdes in properties. [Pg.390]

Dimethyl-I,l -biphenyl has been prepared by a wide variety of procedures, but few of these are of any practical synthetic utility Classical radical biarjl syntheses such as the Gomberg reaction or the thermal decomposition of diaroyl peroxides give complex mixtures of products m which 4,4 dimethyl-l.l -biphenyl is a minor constituent A radical process maj also be involved in the formation of 4,4 dimethyl-1, l -biphenyl (13%) by treatment of 4-bromotoluene with hydrazine hydrate 5 4,4 -Dimethyl-l,l -biphenyl has been obtained in moderate to good yield (68-89%) by treatment of either dichlorobis(4-methyl phenyl)tellurium or l,l -tellurobis(4-methylbenzene) with degassed Raney nickel in 2 methoxyethyl ether 6... [Pg.50]

N,N -Chelation is also exhibited by the dianionic P(III)/P(V) ligands (25) in the MejSn complex (31) [39] and in the magnesium complex (32) [40], which is prepared by oxidation of [Mg(thf)2[ BuNP(p-N Bu)2PN Bu] by elemental tellurium [40]. One of the endocychc N Bu groups in (32) is also weakly coordinated to magnesium, thus providing an intramolecular base-stabihzation similar to that observed for complexes of type (8). [Pg.152]

The formation of volatile chlorotrimethylsilane is a very clean synthetic pathway to prepare several metal complexes. Various trimethylsilyl derivatives of sulfur, selenium, and tellurium have been described. [Pg.35]

Tellurium Halides. Tellurium forms the dihalides TeCl and TeBi, but not Tel2. However, it forms tetrahalides with all four halogens. Tellurium decafluoride [53214-07-6] and hexafluoride can also be prepared. No monohalide, Te2X2, is believed to exist. Tellurium does not form well-defined oxyhalides as do sulfur and selenium. The tellurium halides show varying tendencies to form complexes and addition compounds with nitrogen compounds such as ammonia, pyridine, simple and substituted thioureas and anilines, and ethylenediamine, as well as sulfur trioxide and the chlorides of other elements. [Pg.389]


See other pages where Tellurium complexes preparation is mentioned: [Pg.584]    [Pg.668]    [Pg.182]    [Pg.489]    [Pg.585]    [Pg.1314]    [Pg.5457]    [Pg.721]    [Pg.7]    [Pg.319]    [Pg.177]    [Pg.389]    [Pg.390]    [Pg.169]    [Pg.753]    [Pg.776]    [Pg.2]    [Pg.58]    [Pg.38]    [Pg.971]    [Pg.973]    [Pg.1062]    [Pg.166]    [Pg.1036]    [Pg.303]    [Pg.306]    [Pg.557]    [Pg.562]    [Pg.257]    [Pg.208]    [Pg.212]    [Pg.742]    [Pg.743]    [Pg.56]    [Pg.165]    [Pg.21]    [Pg.83]    [Pg.927]    [Pg.183]   
See also in sourсe #XX -- [ Pg.9 ]




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Complexes preparation

Tellurium complexes

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