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A Novel Electrochemical Method for Protionamide Determination Based on Its Interaction with Alizarin Red S

机译:与茜素红S相互作用的新型电化学方法测定丙酰胺

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The interaction of protionamide with alizarin red S (ARS) and its analytical application were carefully investigated in this contribution. The interaction conditions were carefully studied and optimized by cyclic voltammetry. Under the optimum conditions, the cyclic voltammetry curve of ARS showed an oxidation peak with the peak potential of 0.57 V. After the addition of protionamide to the ARS solution, the peak potential was negatively moved, and meanwhile the oxidation peak current decreased apparently to the concentration of protionamide and then a new method for the protionamide determination was established. The linear equation between the decreasing current (Δip) and protionamide concentration was got as Δip (μA) = 0.01514C(mg/L) −0.01553  (n=9; r=0.991)with the linear range of 10.0~50.0 mg/L, and the detection limit (3σ) was got as 8.25 μg/mL. The effects of coexisting substances on the determination were carefully investigated and the protionamide artificial and tablet samples were detected with satisfactory results.
机译:在此贡献中,仔细研究了丙酰胺与茜素红S(ARS)的相互作用及其分析应用。仔细研究了相互作用条件,并通过循环伏安法进行了优化。在最佳条件下,ARS的循环伏安曲线出现一个氧化峰,峰电位为0.57 V,在ARS溶液中加入丙酰胺后,峰电位负移,同时氧化峰电流明显下降。浓度的丙酰胺,然后建立了测定丙酰胺的新方法。下降电流(Δip)与丙酰胺浓度之间的线性方程为Δip(μA)= 0.01514C(mg / L)-0.01553(n = 9; r = 0.991),线性范围为10.0〜50.0 mg / L的检出限(3σ)为8.25μg/ mL。仔细研究了共存物质对测定的影响,对丙酸酰胺人工和片剂样品进行了检测,结果令人满意。

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