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Effects of water on ionic liquid electrochemical microsensor for oxygen sensing

机译:水对用于氧传感的离子液体电化学微传感器的影响

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The effect of water on ionic liquid (IL) planar electrochemical microsensor was studied in the case of sensing oxygen. This study compared the key analytical performances of the IL based electrochemical microsensor devices using an IL BmimBF(4) direct from the vendor and 'wet' BmimBF(4) containing different amount of water as electrolytes. The electrochemical properties in [Bmim][BF4] with or without oxygen using a planar microsensor device were characterized by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). With the increasing of water concentrations in the IL, a positive shift of redox potential of O-2 and a higher reduction current of oxygen in CV measurement were observed. The constant potential chronoamperometry measurements were conducted to assess the sensitivity, reproducibility and stability of microsensor at varying O-2 concentration using these wet ILs as electrolytes. The short term and long-term stability evaluation of these IL microsensor for sensing oxygen was performed. Our results show that the electrochemical planar microsensor device demonstrates a good sensitivity, reproducibility and stability for sensing oxygen even though the 'wet' ILs were used as electrolytes. A remarkable stability of sensor was observed in stability test using as an electrolyte.
机译:在感应氧气的情况下,研究了水对离子液体(IL)平面电化学微传感器的影响。这项研究比较了基于IL的电化学微传感器设备的关键分析性能,这些设备使用直接来自供应商的IL BmimBF(4)和包含不同量水作为电解质的“湿” BmimBF(4)。通过循环伏安法(CV)和电化学阻抗谱(EIS)表征了[Bmim] [BF4]在有氧或无氧条件下使用平面微传感器装置的电化学性能。随着IL中水浓度的增加,在CV测量中观察到O-2的氧化还原电位正向移动,并且氧气的还原电流更高。使用这些湿IL作为电解质,进行了恒定电位计时电流法测量,以评估在不同的O-2浓度下微传感器的灵敏度,可重复性和稳定性。进行了这些用于感测氧的IL微传感器的短期和长期稳定性评估。我们的结果表明,即使将“湿式” IL用作电解质,电化学平面微传感器设备仍具有良好的灵敏度,可重复性和稳定性,可用于检测氧气。在用作电解质的稳定性测试中观察到传感器的显着稳定性。

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