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Piperidine copper halides

Dithiocarbamate complexes of copper have been sythesized at a high rate. Reports of new complexes include the morpholine-4- (44), thio-morpholine, AT-methylpiperazine-4-, and piperidine- (291) dithiocarba-mates. Novel, polymeric complexes of the type Cu(pipdtc)2 (CuBr) in = 4, or 6) and Cu(pipdtc)2 (CuCl)4 have been prepared by reactions of[Cu(pipdtc)2] with the respective copper halide in CHCla-EtOH (418). The crystal structures of the polymers are known to consist of sheets of individual [Cu(pipdtc)2] molecules linked to polymeric CuBr chains via Cu-S bonds. A series of copper(I) dtc complexes have been the subject of a Cu and Cu NQR-spectral study (440). [Pg.266]

This kind of comparison has been made only for the diastereoselective version of this reaction.13 Water was still used as solvent for the conversion of phenylacetylene, 2-benzyloxyheptanal, and piperidine (Scheme 12.3), but the reaction temperature was lowered to 60°C, room temperature, or even 0°C. As shown in Table 12.1, neither with copper halides (entry 1) nor with silver halides (entry 2) could any satisfactory results be obtained. Only gold halides were still reactive enough at these temperatures. With AuCl at 60°C, the diastereomeric ratio (dr) was still low (entry 3) lowering the temperature to room temperature led to a slight increase of the dr (entry 4) and going to 0°C further increased the dr, but at the same time diminished the yield. With Aul at room temperature (entry 5) and 0°C (entry 6), only marginally better results were obtained. [Pg.360]

Oxidative addition of alkenyl halides, triflates, and other esters to zerovalent palladium compounds has been long known as a viable route to palladium(ii)-alkenyl complexes. Stereospecific coupling reactions involving mono- and (E)- or (Z)-dihalo-alkenes with palladium-copper catalysis under modified Sonogashira conditions are quite versatile and useful. These proceed through oxidative addition of the alkenyl halide via palladium(ii) alkenyl complexes, followed by coupling with a nucleophile (usually an alkynylcopper reagent obtained in situ with co-catalytic copper(i) from terminal alkynes in the presence of, in this case, a base like piperidine instead of diethylamine). ... [Pg.280]

Abstract This review covers the recent recyclable protocols for the C-N bond forming reactions between aromatic, heterocyclic and aliphatic amines such as imidazoles, benzimidazoles, benzylamines, piperidine, pyrrole, imides, anilines, hexyl, cyclohexyl amines, and amides as coupling partners with aryl iodides, bromides, chlorides, and arylboronic acids employing copper-mediated systems. The physical properties and characterization of the catalysts and their use in organic synthesis will be outlined. Most importantly, these recyclable versions developed by many groups in the recent years are potential candidates for commercial exploitation. The effect of additives, solvents, temperature, base, the nature of aryl halides on reactivity, and recycle studies of the heterogeneous catalysts are included in this... [Pg.119]


See other pages where Piperidine copper halides is mentioned: [Pg.223]    [Pg.6059]    [Pg.223]    [Pg.6059]    [Pg.434]    [Pg.655]    [Pg.670]    [Pg.46]    [Pg.6]    [Pg.171]    [Pg.434]    [Pg.119]    [Pg.506]    [Pg.797]    [Pg.214]    [Pg.231]    [Pg.38]    [Pg.21]    [Pg.155]    [Pg.254]    [Pg.669]    [Pg.457]   
See also in sourсe #XX -- [ Pg.824 ]

See also in sourсe #XX -- [ Pg.5 , Pg.824 ]




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Copper halides

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