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Design of a miniaturized multisensor chip with nanoband electrode array and light addressable potentiometric sensor for ion sensing

机译:具有纳米带电极阵列和光寻址电位传感器的小型化多传感器芯片的设计

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Herein, we present a novel miniaturized multisensor chip integrated with a nanoband electrode array (NEA) for lead and copper detection and a light addressable potentiometric sensor (LAPS) for pH sensing. By this means, pH information could be provided before electrochemical analysis to ensure high performance in heavy metal quantification due to the significant effects of solution acidity on electrochemical analyses. The fabrication processes of the multisensor chip are described in detail and the electrochemical behaviour of NEA was characterized using cyclic voltammetry in sulfuric acid and acetate buffer. For the detection of lead and copper qualitatively and quantitatively, square wave anodic stripping voltammetry (SWASV) was applied with the standard addition method. Deposition potential and deposition time were optimized to be a?’0.6 V and 120 s, respectively. NEA exhibited a sensitivity of 0.510 ??A pbba?’1 and 0.678 ??A ppba?’1 towards lead and copper, respectively, with high correlation coefficients. The repetitive and long-term experiments also demonstrated the good reproducibility and stability of NEA in heavy metal detection. Moreover, the silicon nitride modified LAPS showed a pH sensitivity of 56.49 mV pHa?’1 with a high correlation coefficient of 0.9999. The reproducibility of LAPS was also investigated and a deviation of less than 2 mV was obtained in both the samples. These results indicate that the miniaturized multisensor chip demonstrates good electrochemical performance in heavy metal and pH sensing.
机译:在这里,我们提出了一种新型的微型多传感器芯片,该芯片集成了用于铅和铜检测的纳米带电极阵列(NEA)和用于pH传感的光寻址电位传感器(LAPS)。通过这种方式,由于溶液酸度对电化学分析的显着影响,可以在电化学分析之前提供pH信息,以确保在重金属定量分析中具有较高的性能。详细描述了多传感器芯片的制造过程,并在硫酸和乙酸盐缓冲液中使用循环伏安法表征了NEA的电化学行为。为了定性和定量地检测铅和铜,采用标准添加方法应用方波阳极溶出伏安法(SWASV)。沉积电势和沉积时间分别优化为0.6 V和120 s。 NEA对铅和铜的敏感度分别为0.510 A pbba -1和0.678 Appba -1,具有较高的相关系数。重复和长期的实验还证明了NEA在重金属检测中具有良好的重现性和稳定性。此外,氮化硅改性的LAPS的pH敏感性为56.49 mV pHa?1,相关系数为0.9999。还研究了LAPS的重现性,两个样品的偏差均小于2 mV。这些结果表明,小型化的多传感器芯片在重金属和pH传感方面显示出良好的电化学性能。

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