Electrochemical Properties of Copper(II) Complexes with Multidentate N,O-Schiff Base Ligands
Sun-Deuk Kim, Gi-Ho Jang, Jun-Kwang Kim, Seongwoo Lee, Jae-Joung Joung
Abstract
Sun-Deuk Kim, Gi-Ho Jang, Jun-Kwang Kim, Seongwoo Lee, Jae-Joung Joung
Abstract
Algal(II) Multidentate N, O-Schiff base ligands, such as bis(salicylaldehyde) ethylenediimine(SED), bis(salicylaldehyde) propylenediimine(SPD), bis(salicylaldehyde) diethylenetriimine(SDT), bis (salicylaldehyde) triethylenetetraimine(STT) and bis(salicyl-aldehyde)tetraethylenepentaimine(STP) were prepared. Stepwise proton dissociation constants of the Schiff base were measured potentiometrically in ethanol and a mixture of 70% dioxane and 30% . The stability constants of copper(II)-Schiff base complexes were in the order of Cu(II)-SPDCu(II)-SED~STTCu(II)-STP. Oxidation-reduction process of the Cu(II)-Schiff base complexes was involved with one-electron reaction.
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Algal(II) Multidentate N, O-Schiff base ligands, such as bis(salicylaldehyde) ethylenediimine(SED), bis(salicylaldehyde) propylenediimine(SPD), bis(salicylaldehyde) diethylenetriimine(SDT), bis (salicylaldehyde) triethylenetetraimine(STT) and bis(salicyl-aldehyde)tetraethylenepentaimine(STP) were prepared. Stepwise proton dissociation constants of the Schiff base were measured potentiometrically in ethanol and a mixture of 70% dioxane and 30% . The stability constants of copper(II)-Schiff base complexes were in the order of Cu(II)-SPDCu(II)-SED~STTCu(II)-STP. Oxidation-reduction process of the Cu(II)-Schiff base complexes was involved with one-electron reaction.
Key concepts: Salicylaldehyde, Schiff base, Chemistry, Denticity, Copper, Electrochemistry, Inorganic chemistry, Dissociation (chemistry)