2010
DOI: 10.1016/j.ica.2009.09.041
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Synthesis, crystal structure, spectral and magnetic studies and catecholase activity of copper(II) complexes with di- and tri-podal ligands

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Cited by 83 publications
(34 citation statements)
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“…The obtained value for the kinetic parameter is significantly higher than those reported for other dinuclear Cu II compounds containing acetate ligands, as well as for other copper(II) compounds . However, our k cat value is much lower than that found, for example, for the cationic compound [Cu 2 (H 2 L)(OH)(H 2 O)(NO 3 )](NO 3 ) 3 [L=2,6‐bis( N ‐ethylpiperazineiminomethyl)‐4‐methylphenolato], for which k cat was 540 min −1 , but the catalytic efficiency of this catalyst is shorter (2.35×10 5 m −1 min −1 ) than that observed for 1 (see above).…”
Section: Resultscontrasting
confidence: 77%
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“…The obtained value for the kinetic parameter is significantly higher than those reported for other dinuclear Cu II compounds containing acetate ligands, as well as for other copper(II) compounds . However, our k cat value is much lower than that found, for example, for the cationic compound [Cu 2 (H 2 L)(OH)(H 2 O)(NO 3 )](NO 3 ) 3 [L=2,6‐bis( N ‐ethylpiperazineiminomethyl)‐4‐methylphenolato], for which k cat was 540 min −1 , but the catalytic efficiency of this catalyst is shorter (2.35×10 5 m −1 min −1 ) than that observed for 1 (see above).…”
Section: Resultscontrasting
confidence: 77%
“…Such an enzyme has the ability to catalyze the oxidation of ortho ‐phenols to the appropriate ortho ‐quinones by molecular oxygen . The catecholase activity of various mono‐ and dicopper compounds, as well as that of copper clusters with different structural topologies, has been widely explored …”
Section: Introductionmentioning
confidence: 99%
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“…k cat = 2.06 ± 0.09 h -1 ) is observed in methanol compared to 1.51 ± 0.08 h -1 observed in DMF.These values are rather low compared to those for Cu(II) in the literature. [20][21] 1.51 ± 0.08…”
Section: Resultsmentioning
confidence: 99%
“…The resulting catalytic properties were shown to be enhanced when the asymmetry was created. The properties of mono and binuclear Cu (II) complexes have also been compared [17,18] and the rate for the catalysis of catechol was shown to be ligand-dependent. We wish to report herein the synthesis of two new designed ligands and the comparative reactivity of their respective complexes synthesized in situ toward catechol, in order to mimic the activity of the copper-containing enzyme tyrosinase.…”
Section: Introductionmentioning
confidence: 99%