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Investigation of Electrochemical Behavior of 4-(2-Pyridylazo)resorcinol and its Cu2+?Complex by Using Polarographic and Voltammetric Techniques

机译:使用极谱和伏安技术研究4-(2-吡啶基)间苯酚及其Cu2 +α复合物的电化学行为

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In this work, the electrochemical behavior of 4-(2-pyridylazo)resorcinol (PAR) azo dye was studied in Britton-Robinson (BR) buffer (pH 2.0-12.0) media by employing square wave voltammetry (SWV), differential pulse polarography (DPP), direct current polarography (DCP) and cyclic voltammetry (CV) techniques. From the polarographic and voltammetric results, the electrochemical reaction mechanism of the azo dye has been proposed. At the same time, the electrochemical behavior of the copper(II) complex with PAR was investigated by using SWV in 0.1 M KNO3 supporting electrolyte. SWV behavior of Cu(II)-PAR complex at different metal and ligand concentrations have been determined in KNO3 supporting electrolyte media. The metal:ligand molar ratio and stability constant of the Cu(II)- PAR complex were determined to be 1:2 and 5.42x1010 , respectively.
机译:在这项工作中,通过采用方波伏安法(SWV),差分脉冲极谱法在Britton-Robinson(Br)缓冲液(PH 2.0-12.0)培养基中研究了4-(2-吡啶基)间苯酚(PR)偶氮染料的电化学行为 (DPP),直流极谱 - (DCP)和循环伏安法(CV)技术。 从极谱和伏安效果来看,已经提出了偶氮染料的电化学反应机理。 同时,通过使用SWV在0.1M关联电解质中使用SWV来研究铜(II)复合物的电化学行为。 Cu(II)-PAR复合物在不同金属和配体浓度下的SWV行为已经在KNO3支撑电解质介质中确定。 金属:Cu(II) - PAR复合物的配体摩尔比和稳定性常数分别测定为1:2和5.42×1010。

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