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Iridium oxide as actuator material for the ISFET-based sensor-actuator system

机译:氧化铱作为基于ISFET的传感器-执行器系统的执行器材料

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摘要

Acid or base concentrations can be determined by performing an acid-base titration with Coulometrically generated OH- or H+ ions at a noble-metal actuator electrode in close proximity to the pH-sensitive gate of an ISFET. The ISFET is used as the indicator electrode to detect the equivalence point in the titration curve. The potential of the actuator electrode during the generation of the titrant is relatively high for the anodic water electrolysis (or relatively low for the cathodic reaction). Consequently other redox couples which are possibly present in the sample solution can interfere with the water electrolysis. This reduces the efficiency of the current to titrant generation on which this measurement relies. To overcome this problem, iridium oxide has been used as a new electroactive material for the actuator electrode. The reversible redox reaction in this metal oxide occurs at a favourable potential and is attended by the exclusive uptake or release of protons, making a titration possible. It is shown that a Coulometric titration in the presence of Cl¿ ions, formerly not possible with the noble-metal actuator electrode because of the redox interference, can now successfully be carried out with iridium oxide as the actuator material. Calculations show that the ISFET pH-sensor is well suited to determining accurately the equivalence point in the steep part of the titration curve, because of its short response time.
机译:酸或碱的浓度可以通过在贵金属致动器电极上紧靠ISFET的pH敏感栅的位置用库仑法生成的OH-或H +离子进行酸碱滴定来确定。 ISFET用作指示电极,以检测滴定曲线中的当量点。对于阳极水电解而言,在滴定剂的产生期间致动器电极的电势相对较高(对于阴极反应而言则相对较低)。因此,样品溶液中可能存在的其他氧化还原对可能会干扰水的电解。这降低了该测量所依赖的电流产生滴定剂的效率。为了克服这个问题,氧化铱已经用作致动器电极的新电活性材料。该金属氧化物中的可逆氧化还原反应在有利的电位下发生,并且伴随着质子的唯一吸收或释放,从而使滴定成为可能。结果表明,使用氧化铱作为致动器材料,现在可以成功地在存在Cl-离子的情况下进行库仑滴定,以前由于氧化还原干扰而使用贵金属致动器电极是不可能的。计算表明,由于ISFET pH传感器响应时间短,因此非常适合准确确定滴定曲线陡峭部分的等效点。

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