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A Disposable Alkaline Phosphatase-Based Biosensor for Vanadium Chronoamperometric Determination

机译:基于碱性磷酸酶的一次性生物传感器,用于钒计时电流法测定

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A chronoamperometric method for vanadium ion determination, based on the inhibition of the enzyme alkaline phosphatase, is reported. Screen-printed carbon electrodes modified with gold nanoparticles were used as transducers for the immobilization of the enzyme. The enzymatic activity over 4-nitrophenyl phosphate sodium salt is affected by vanadium ions, which results in a decrease in the chronoamperometric current registered. The developed method has a detection limit of 0.39 ± 0.06 μM, a repeatability of 7.7% (n = 4) and a reproducibility of 8% (n = 3). A study of the possible interferences shows that the presence of Mo(VI), Cr(III), Ca(II) and W(VI), may affect vanadium determination at concentration higher than 1.0 mM. The method was successfully applied to the determination of vanadium in spiked tap water.
机译:报道了一种基于碱性磷酸酶抑制作用的计时安培法测定钒离子的方法。用金纳米粒子修饰的丝网印刷碳电极用作固定化酶的传感器。钒离子会影响4-硝基苯基磷酸钠盐的酶活性,这会导致所记录的计时电流减小。所开发的方法的检出限为0.39±0.06μM,重复性为7.7%(n = 4),重现性为8%(n = 3)。对可能的干扰物的研究表明,Mo(VI),Cr(III),Ca(II)和W(VI)的存在可能会影响浓度大于1.0 mM的钒的测定。该方法已成功地用于加标自来水中钒的测定。

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