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Highly-Sensitive Nanostructured Sensor System Based on RuO_(2) Sensing Electrode for Water Quality Monitoring

机译:基于RuO_(2)传感电极的高灵敏度纳米结构传感器系统,用于水质监测

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Sensor system based on nanostructured RuO_(2) sensing electrode (SE) was fabricated and examined for pH and dissolved oxygen (DO) detection in water at a temperature range of 9-35 deg C. The electromotive force (emf) response at these temperatures was linear to the logarithm of pH (from 2.0 to 13.0 pH) and DO concentrations in the range from 0.6 to 8.0 ppm (log[O_(2)], -4.71 to -3.59) at a neutral pH. In was also found that the response/recovery time of the sensor to DO changes is sluggish as the water temperature cools down. Sensor response time, T_(90), to the different DO increased from 8 min at a temperature of 23 deg C to about 30 min at a temperature of 9 deg C. The slope was -41 mV per decade for the RuO_(2)-SE at 8.0 pH and it was closely followed the Nernst equation. However, it was found that in strong alkaline solutions sensor emf is a mixed-potential of fast and slow electrochemical reactions involving (O_(2))~(-), (RuO_(4))~(2-) and OH~(-) ions. X-ray diffraction analysis (XRD), scanning electron microscopy (SEM), energy-dispersive spectroscopy (EDX) and impedance spectroscopy techniques were used to examine the morphology, crystalline structure and electrochemical behaviour of the nanostructured RuO_(2)-SEs, respectively. Characterization analysis revealed that RuO_(2)-SE consist of RuO_(2) nano-particles in the range of 100-650 nm homogeneously distributed across SE.
机译:制作了基于纳米结构RuO_(2)感应电极(SE)的传感器系统,并检查了9-35摄氏度温度范围内水中的pH和溶解氧(DO)检测。在这些温度下的电动势(emf)响应在中性pH值下,pH与pH(从2.0到13.0 pH)和DO浓度在0.6到8.0 ppm(log [O_(2)],-4.71到-3.59)的对数呈线性关系。还发现,随着水温的降低,传感器对DO变化的响应/恢复时间变慢。传感器对不同DO的响应时间T_(90)从23摄氏度的8分钟增加到9摄氏度的30分钟。RuO_(2)的斜率是每十年-41 mV -SE在8.0 pH值下,非常符合能斯特方程。然而,发现在强碱性溶液中,传感器电动势是包括(O_(2))〜(-),(RuO_(4))〜(2-)和OH〜( -)离子。利用X射线衍射分析(XRD),扫描电子显微镜(SEM),能量色散谱(EDX)和阻抗谱技术分别研究了纳米结构RuO_(2)-SEs的形貌,晶体结构和电化学行为。 。表征分析表明,RuO_(2)-SE由RuO_(2)纳米粒子组成,该纳米粒子在100-650 nm的范围内均匀分布在SE上。

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