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首页> 外文期刊>Journal of solid state electrochemistry >Voltammetric determination of thiocytosine based on its electrocatalytic oxidation on the surface of carbon-paste electrode modified with cobalt Schiff base complexes
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Voltammetric determination of thiocytosine based on its electrocatalytic oxidation on the surface of carbon-paste electrode modified with cobalt Schiff base complexes

机译:基于钴席夫碱配合物修饰的碳糊电极表面的电催化氧化,测定硫代胞嘧啶的伏安法

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摘要

The electrochemical oxidation of thiocytosine on the surface of carbon-paste electrode modified with Schiff base(salophen derivatives)complexes of cobalt is studied.The effect of the substituents in the structure of salophen on the catalytic property of the modified electrode is investi gated by using cyclic and differential pulse voltammetry.Cobalt(II)-5-nitrosalophen,because of its electrophilic functional groups,leads to a considerable enhancement in the catalytic activity,sensitivity(peak current),and a marked increase in the anodic potential of the modified electrode.The differential pulse voltammetry is applied as a very sensitive method for the detection of thiocytosine.The linear dynamic range was between 1×10~(-3)to 4×10~(-6)M with a slope of 0.0168 mu A/mu M,and the detection limit was 1×10~(-6)M.The modified electrode is successfully applied for the voltammetric detection of thiocytosine in human synthetic serum sample and also pharmaceutical prepara tions.A linear range from 1×10~(-3)to 1×10~(-5)M with a slope of 0.0175 mu A/mu M is resulted for the standard addition of thiocytosine spiked to the buffered human serum,which is differing from the curve in buffer solution about 4%.The electrode has a very good reproducibility(relative standard deviation for the slope of the calibration curve is less than 3.5% based on six determinations in a month),high stability in its voltammetric response and low detection limit for thiocytosine,and high electrochemical sensitivity with respect to other biological thiols such as cysteine.
机译:研究了钴的席夫碱(盐基酚衍生物)配合物修饰的碳糊电极表面硫代胞嘧啶的电化学氧化。研究了酚盐结构中取代基对修饰电极催化性能的影响。循环和微分脉冲伏安法。(II)-5-nitrosalophen钴由于其亲电官能团而导致催化活性,灵敏度(峰值电流)显着提高以及修饰电极的阳极电位显着提高差分脉冲伏安法是检测硫胞嘧啶的一种非常灵敏的方法,线性动态范围在1×10〜(-3)至4×10〜(-6)M之间,斜率为0.0168μA/ μM,检测限为1×10〜(-6)M。该修饰电极已成功用于人体合成血清样品中硫代胞嘧啶的伏安检测以及药物制备。线性范围为将加标的硫代胞嘧啶添加到缓冲的人血清中后,得到的斜率为0.0175μA/μM的m 1×10〜(-3)至1×10〜(-5)M,与曲线不同在一个缓冲溶液中约4%。该电极具有很好的重现性(基于一个月的六次测定,校准曲线的斜率的相对标准偏差小于3.5%),其伏安响应的稳定性高且对硫胞嘧啶,对其他生物硫醇(如半胱氨酸)具有较高的电化学敏感性。

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