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Tungsten trioxide (WO3) as an actuator electrode material for ISFET-based coulometric sensor-actuator systems

机译:三氧化钨(WO3)作为基于ISFET的库仑传感器-执行器系统的执行器电极材料

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摘要

Acid or base concentrations can be determined by performing an acid-base titration with OH− or H+ ions, coulometrically generated by the electrolysis of water at a noble metal actuator electrode. This can be done very rapidly if the actuator electrode is in close proximity to an ISFET which is used as the indicator electrode to detect the equivalence point in the titration curve. In order to restrict the effect of interfering redox reactions at the actuator electrode during coulometric generation, electroactive actuator materials have been studied which can exchange H+ ions at a lower electrode potential than the potential of anodic water electrolysis. In this paper, electrochemically grown tungsten trioxide (WO3) is proposed as an actuator electrode material. At a WO3 electrode, H+ ions can be generated by a redox reaction at approximately 0.1 V versus SCE in a mildly alkaline solution (0.5–7 mM KOH) (anodic water electrolysis at a Pt electrode occurs at 1.5 V versus SCE). The observed thermodynamic and kinetic behaviour of the redox reaction is in good agreement with the theoretical predictions. Disadvantages of WO3 are its slow dissolution in aqueous solutions and the restriction that a titration at a WO3 electrode can only be performed in alkaline solutions.
机译:酸或碱浓度可以通过用OH-或H +离子进行酸碱滴定来确定,该滴定法是通过水在贵金属致动器电极上电解生成的库仑法。如果执行器电极非常靠近ISFET(用作指示电极以检测滴定曲线中的当量点),则可以非常快速地完成此操作。为了限制在电量测定过程中干扰致动器电极上的氧化还原反应的影响,已经研究了电活性致动器材料,该材料可以在比阳极水电解电势低的电极电势下交换H +离子。在本文中,提出了电化学生长的三氧化钨(WO3)作为致动器电极材料。在WO3电极上,相对于SCE,在弱碱性溶液(0.5-7 mM KOH)中,在约0.1 V的条件下,氧化还原反应可产生H +离子(在Pt电极上,相对于SCE,在1.5 V下发生阳极水电解)。观察到的氧化还原反应的热力学和动力学行为与理论预测吻合良好。 WO3的缺点是它在水溶液中溶解缓慢,并且限制了只能在碱性溶液中进行WO3电极的滴定。

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