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A Photoelectrochemical Sensor Based on Anodic TiO2 for Glucose Determination

机译:基于阳极TiO2的光电化学传感器用于葡萄糖的测定

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摘要

A simple photoelectrochemical (PEC) sensor based on non-modified nanostructured anodic TiO was fabricated and used for a rapid and sensitive detection of glucose. The anodic TiO layers were synthesized in an ethylene glycol-based solution containing NH F (0.38 wt.%) and H O (1.79 wt.%) via a three-step procedure carried out at the constant voltage of 40 V at 20 °C. At the applied potentials of 0.2, 0.5, and 1 V vs. saturated calomel electrode (SCE), the developed sensor exhibited a photoelectochemical response toward the oxidation of glucose, and two linear ranges in calibration plots were observed. The highest sensitivity of 0.237 µA µmol cm was estimated for the applied bias of 1 V. The lowest limit of detection (LOD) was obtained for the potential of 0.5 V vs. SCE (7.8 mM) with the fastest response at ~3 s. Moreover, the proposed PEC sensor exhibited relatively high sensibility, good reproducibility, and due to its self-cleaning properties, a good long-term stability. Interfering tests showed the selective response of the sensor in the presence of urea and uric acid. Real-life sample analyses were performed using an intravenous glucose solution, which confirmed the possibility of determining the concentration of analyte in such types of samples.
机译:制作了一种基于未修饰的纳米结构阳极TiO的简单光电化学(PEC)传感器,并将其用于快速灵敏地检测葡萄糖。通过在20℃下在40V的恒定电压下进行的三步法,在含有NH F(0.38重量%)和H O(1.79重量%)的基于乙二醇的溶液中合成阳极TiO层。在相对于饱和甘汞电极(SCE)施加0.2 V,0.5 V和1 V的电势下,开发的传感器对葡萄糖氧化表现出光电化学响应,并在校准图中观察到两个线性范围。对于1 V的施加偏置,最高灵敏度估计为0.237 µA µmol cm。对于0.5 V vs. SCE(7.8 mM)的电势,获得最低检测限(LOD),在约3 s时响应最快。此外,所提出的PEC传感器表现出相对较高的灵敏度,良好的可再现性,并且由于其自清洁特性而具有良好的长期稳定性。干扰测试表明传感器在尿素和尿酸存在下的选择性响应。使用静脉内葡萄糖溶液进行现实生活中的样品分析,这证实了确定此类样品中分析物浓度的可能性。

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