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Copper complexes crystal structure

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]

These authors further described the synthesis and resolution (by chiral HPLC) of a new C2-symmetric planar-chiral bipyridine ligand [43] (see structure 35 in Scheme 18). They obtained an X-ray crystal structure of the corresponding copper complex proving a bidentate complexation. This system led to high diastereo- (up to 94%) and enantioselectivity (up to 94%) in the... [Pg.107]

Bertrand T, Jolivalt C, Briozzo P, Caminade E, Joly N, Madzak C, Mougin C. 2002. Crystal structure of a four-copper laccase complexed with an arylamine Insights into substrate recognition and correlation with kinetics. Biochemistry 41 7325-7333. [Pg.630]

K. Nomoto, Y. Mino, T. Ishida, H. Yoshioka, N. Ota. M. Inoue, S. Tagaki, and T. Takemoto, X-ray crystal structure of the copper(ll)complex of mugineic acid, a naturally occuring metal chelator of graminaceous plants. J. Client. Soc. Client. Contmun. 338 (1981). [Pg.89]

Fig. 14 Fragment of crystal structure of carousel copper(II)-triazine complex showing over-the-center coordination of chloride anion to a triazine (coordinates from [92])... Fig. 14 Fragment of crystal structure of carousel copper(II)-triazine complex showing over-the-center coordination of chloride anion to a triazine (coordinates from [92])...
Comba and co-workers described a simple and efficient method for the determination of solution structures of weakly coupled binuclear copper(II) complexes.54 The technique involves the combination of molecular mechanics55,56 and EPR spectroscopy. From this standpoint they reported the structure of the complex (29). Using an acyclic tertiary tetraamine ligand, Bernhardt reported57 crystal structure of the complex (30), along with its redox properties. [Pg.752]

The gallium and indium complexes of novel bis(thiosemicarbazones) have been investigated.71-73 Initial publications indicated a more complex stoichiometry where X-ray crystal structures suggested either dinuclear or trinuclear complexes. Whereas these complexes are quite interesting, they are less likely to result in useful nuclear medicine radiopharmaceuticals. The bis(thiosemi-carbazones) are quite useful as ligands for copper, and are discussed in more detail vide infra). [Pg.892]

Van Niekerk, J.N. and Schoening, RR.L. 1953. A new type of copper complex as found in the crystal structure of cupric acetate, Cu2(CH3C00)4x2H20. Acta Crystallographica 6 227-232. [Pg.239]


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See also in sourсe #XX -- [ Pg.2 , Pg.481 ]




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