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Simultaneous Electrochemical Determination of Dopamine, Epinephrine and Uric Acid at Silver Doped Poly-L-Cysteine Film Electrode

机译:银掺杂聚半胱氨酸薄膜电极同时电化学测定多巴胺,肾上腺素和尿酸

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An electrochemical sensor based on silver doped poly-L-cysteine film (Ag-PLC) has been fabricated for simultaneous determination of dopamine, epinephrine and uric acid in the presence of ascorbic acid. Although bare GC electrode resolves the voltammetric signals of dopamine and epinephrine, it fails to resolve the signals of dopamine and uric acid in a mixture. However, the silver doped poly-L-cysteine film modified electrode not only separates the voltammetric signals of dopamine, epinephrine and uric acid with potential difference of 390 and 135 mV v.s. Ag/AgCl between dopamine-epinephrine in cathodic peak potential and uric acid-(dopamine-i-epinephrine) in anodic peak potential, respectively, but also shows higher electrocatalytic activity towards dopamine, uric acid and epinephrine in the presence of high concentration of ascorbic acid. Under the optimized conditions, the electrochemical sensor exhibited hnear responses for uric acid concentration over the range 5.00 x 10~(-6) to 5.00 x 10~(-5) mol L~(-1) and 5.00 x 10~(-5) to 2.50 x 10~(-4) mol L~(-1). The amperometric current response was also increased linearly with the increase of dopamine concentration in the range of 5.00 x 10~(-6) to 1.10 x 10~(-4) mol L~(-1). For epinephrine, the linear ranges were 5.00 x 10~(-6) to 3.00 x 10~(-5) mol L~(-1) and 3.00 x 10~(-5) to 1.10 x 10~(-4) mol L~(-1), respectively. The practical application for the present modified electrode was demonstrated by determining the concentration of dopamine, uric acid and epinephrine in human urine samples,
机译:制备了一种基于银掺杂的聚L-半胱氨酸膜(Ag-PLC)的电化学传感器,用于在抗坏血酸存在下同时测定多巴胺,肾上腺素和尿酸。尽管裸露的GC电极可分辨多巴胺和肾上腺素的伏安信号,但无法分辨混合物中多巴胺和尿酸的信号。然而,银掺杂的聚-L-半胱氨酸薄膜修饰的电极不仅分离了多巴胺,肾上腺素和尿酸的伏安信号,电势差为390和135 mVv.s。阴极峰电位的多巴胺-肾上腺素和阳极峰电位的尿酸-(dopamine-i-肾上腺素)之间的Ag / AgCl分别在高浓度抗坏血酸存在下对多巴胺,尿酸和肾上腺素具有更高的电催化活性酸。在最佳条件下,电化学传感器对尿酸浓度在5.00 x 10〜(-6)至5.00 x 10〜(-5)mol L〜(-1)和5.00 x 10〜(-5)范围内表现出明显的响应。 )至2.50 x 10〜(-4)mol L〜(-1)。随着多巴胺浓度在5.00 x 10〜(-6)到1.10 x 10〜(-4)mol L〜(-1)范围内的增加,电流响应也呈线性增加。对于肾上腺素,线性范围为5.00 x 10〜(-6)mol至3.00 x 10〜(-5)mol L〜(-1)和3.00 x 10〜(-5)mol至1.10 x 10〜(-4)mol L〜(-1)。通过测定人尿液样品中多巴胺,尿酸和肾上腺素的浓度证明了该修饰电极的实际应用,

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