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Active Potentiometry for Dissolved Oxygen Monitoring with Platinum Electrodes

机译:有源电位计用于使用铂电极监测溶解氧

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摘要

Potentiometric oxygen monitoring using platinum as the electrode material was enabled by the combination of conventional potentiometry with active prepolarization protocols, what we call active potentiometry. The obtained logarithmic transfer function is well-suited for the measurement of dissolved oxygen in biomedical applications, as the physiological oxygen concentration typically varies over several decades. We describe the application of active potentiometry in phosphate buffered salt solution at different pH and ion strength. Sensitivity was in the range of 60 mV/dec oxygen concentration; the transfer function deviated from logarithmic behavior for smaller oxygen concentration and higher ion strength of the electrolyte. Long-term stability was demonstrated for 60 h. Based on these measurement results and additional cyclic voltammetry investigations a model is discussed to explain the potential forming mechanism. The described method of active potentiometry is applicable to many different potentiometric sensors possibly enhancing sensitivity or selectivity for a specific parameter.
机译:通过将常规电位计与有源预极化协议(我们称为有源电位计)相结合,可以实现使用铂作为电极材料的电位氧监测。所获得的对数传递函数非常适合用于生物医学应用中的溶解氧测量,因为生理氧浓度通常会持续数十年。我们描述了在不同pH和离子强度的磷酸盐缓冲盐溶液中有源电位计的应用。灵敏度在60 mV / dec氧气浓度范围内;对于较小的氧气浓度和较高的电解质离子强度,传递函数偏离对数行为。证明了60小时的长期稳定性。基于这些测量结果和其他循环伏安法研究,讨论了一个模型来解释潜在的形成机理。所描述的有源电位计的方法适用于许多不同的电位计传感器,可能会提高对特定参数的灵敏度或选择性。

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