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首页> 外文期刊>Electrochimica Acta >A highly sensitive and selective sensor on the basis of 4-hydroxy-2-(triphenylphosphonio)phenolate and multi-wall carbon nanotubes for electrocatalytic determination of folic acid in presence of ascorbic acid and uric acid
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A highly sensitive and selective sensor on the basis of 4-hydroxy-2-(triphenylphosphonio)phenolate and multi-wall carbon nanotubes for electrocatalytic determination of folic acid in presence of ascorbic acid and uric acid

机译:基于4-羟基-2-(三苯基膦酰基)酚醛酸盐和多壁碳纳米管的高敏感和选择性的传感器,用于在抗坏血酸和尿酸存在下电催化测定叶酸

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摘要

In this study, a highly sensitive and selective sensor was fabricated on the basis of 4-hydroxy-2-(triphenylphosphonio)phenolate (HTP) and a multi-wall carbon nanotubes paste electrode (HTP-MWCNT-CPE) for the trace amounts quantification of folic acid (FA). The results show that the combination of multi-wall carbon nanotubes and a modifier causes a dramatic enhancement in the sensitivity of FA quantification. Kinetic parameters such as the electron transfer coefficient, α, and the catalytic electron transfer rate constant, k~+, for the oxidation of FA at the modified electrode were estimated using cyclic voltammetry. The detection limit of 0.036 μM and two linear calibration ranges of 0.2-8.0 μM and 8.0-175.0 μM were obtained for FA determination at HTP-MWCNT-CPE using the differential pulse voltammetry (DPV). By DPV, the modified electrode could separate ascorbic acid (AA), FA, and uric acid (UA) signals into three well-defined voltammetric peaks. Finally, HTP-MWCNT-CPE proved to have good sensitivity and stability, and was successfully applied for the determination of FA in wheat flour and pharmaceutical samples, FA and AA in fruits, and AA, FA and UA in human urine samples.
机译:在该研究中,基于4-羟基-2-(三苯基膦酰基)酚(HTP)和多壁碳纳米管浆料电极(HTP-MWCNT-CPE)的痕量量化来制造高敏感和选择性传感器。叶酸(FA)。结果表明,多壁碳纳米管和改性剂的组合导致FA量化灵敏度的显着增强。使用循环伏安估计诸如电子转移系数,α和催化电子传递速率常数K〜+的动力学参数K〜+。使用差分脉冲伏安法(DPV)在HTP-MWCNT-CPE下获得0.036μm和两个线性校准范围的检出限为0.036μm和两种线性校准范围。通过DPV,改性电极可以将抗坏血酸(AA),FA和尿酸(UA)信号分离成三个明确的伏安峰。最后,HTP-MWCNT-CPE证明具有良好的敏感性和稳定性,并成功地应用于小麦粉和药物样品,FA和AA中的FA和AA,FA和UA中的FA和AA。

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