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Improvement of amperometric transducer selectivity using nanosized phenylenediamine films

机译:使用纳米级苯二胺薄膜改善安培传感器的选择性

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In this work, we studied the conditions of deposition of a semipermeable polyphenylenediamine (PPD)-based membrane on amperometric disk platinum electrodes. Restricting an access of interfering substances to the electrode surface, the membrane prevents their impact on the sensor operation. Two methods of membrane deposition by electropolymerization were compared—at varying potential (cyclic voltammetry) and at constant potential. The cyclic voltammetry was shown to be easier in performing and providing better properties of the membrane. The dependence of PPD membrane effectiveness on the number of cyclic voltammograms and phenylenediamine concentration was analyzed. It was shown that the impact of interfering substances (ascorbic acid, dopamine, cysteine, uric acid) on sensor operation could be completely avoided using three cyclic voltammograms in 30?mM phenylenediamine. On the other hand, when working with diluted samples, i.e., at lower concentrations of electroactive substances, it is reasonable to decrease the phenylenediamine concentration to 5?mM, which would result in a higher sensitivity of transducers to hydrogen peroxide due to a thinner PPD layer. The PPD membrane was tested during continuous operation and at 8-day storage and turned out to be efficient in sensor and biosensors.
机译:在这项工作中,我们研究了在安培圆盘铂电极上沉积半透性聚苯二胺(PPD)基膜的条件。膜限制了干扰物质进入电极表面,可防止其对传感器操作的影响。比较了两种通过电聚合法沉积膜的方法-在可变电势下(循环伏安法)和在恒定电势下。已显示循环伏安法更易于执行并提供更好的膜性能。分析了PPD膜有效性对循环伏安图数量和苯二胺浓度的依赖性。结果表明,使用30 µmM苯二胺中的三个循环伏安图可完全避免干扰物质(抗坏血酸,多巴胺,半胱氨酸,尿酸)对传感器操作的影响。另一方面,当使用稀释的样品时,即在较低的电活性物质浓度下,将苯二胺的浓度降低至5?mM是合理的,这将由于PPD较薄而导致传感器对过氧化氢的敏感性更高。层。 PPD膜在连续运行期间和在8天的储存条件下进行了测试,结果证明在传感器和生物传感器中非常有效。

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