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Reverse Current Pulse Method To Restore Uniform Concentration Profiles in Ion-Selective Membranes. 1. Galvanostatic Pulse Methods with Decreased Cycle Time

机译:反向电流脉冲方法可恢复离子选择膜的均匀浓度分布。 1.减少循环时间的恒电流脉冲方法

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The applications of ion-selective electrodes (ISEs) have been broadened through the introduction of galvanostatic current pulse methods in potentiometric analysis. An important requirement in these applications is the restoration of the uniform equilibrium concentration profiles in the ISE membrane between each measurement. The simplest restoration method is zero-current relaxation, in which the membrane relaxes under open-circuit conditions in a diffusion-controlled process. This paper presents a novel restoration method using a reverse current pulse. An analytic model for this restoration method is derived to predict the concentration profiles inside ISE membranes following galvanostatic current pulses. This model allows the calculation of the voltage transients as the membrane voltage relaxes back toward its zero-current equilibrium value. The predicted concentration profiles and voltage transients are confirmed using spectroelec-trochemical microscopy (SpECM). The reverse current restoration method described in this paper reduces the voltage drift and voltage error by 10-100 times compared to the zero-current restoration method. Therefore, this new method provides faster and more reproducible voltage measurements in most chronopotentiometric ISE applications, such as improving the detection limit and determining concentrations and diffusion coefficients of membrane species. One limitation of the reverse current restoration method is that it cannot be used in a few applications that require background electrolyte loaded membranes without excess of lipophilic cation exchanger.
机译:通过在电位分析中引入恒电流脉冲方法,扩大了离子选择电极(ISE)的应用范围。这些应用中的一个重要要求是在每次测量之间恢复ISE膜中均匀的平衡浓度曲线。最简单的恢复方法是零电流松弛,其中膜在开路条件下以扩散控制的过程松弛。本文提出了一种使用反向电流脉冲的新型恢复方法。推导了此修复方法的分析模型,以预测恒电流脉​​冲后ISE膜内部的浓度分布。当膜电压朝着其零电流平衡值松弛时,该模型允许计算电压瞬变。预测的浓度分布和电压瞬变使用光谱电子化学显微镜(SpECM)确认。与零电流恢复方法相比,本文描述的反向电流恢复方法可将电压漂移和电压误差降低10-100倍。因此,这种新方法在大多数计时电位ISE应用中提供了更快,更可重复的电压测量,例如提高了检测极限并确定了膜物质的浓度和扩散系数。反向电流恢复方法的一个局限性在于,它不能用于少数需要背景电解质膜且没有过多亲脂性阳离子交换剂的应用中。

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