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Determination of the surface charge density of a mercury electrode by extrusion: a new method for correction of the faradaic component

机译:挤压法测定汞电极的表面电荷密度:校正法拉第成分的新方法

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The accurate determination of the surface charge density at the mercury|solution interface by the method of extrusion of mercury drops is impaired by the faradaic current caused by traces of electroactive species. This paper describes a new design of a hanging mercury drop electrode with accurate control of the extruded electrode area, to within 0.1%, together with a new and reliable procedure for correction of the faradaic current. The procedure is based on first obtaining the correction parameters in the presence of increasing amounts of electroactive species and then using these parameters for correction of the faradaic component so as to obtain the surface charge density of the electrode. Implementation of the method with a microcomputer controlled system provides automatic acquisition of corrected electrode charge density values as a function of the electrode potential. The results obtained with this new method are in excellent agreement with those obtained by other methods, as illustrated for aqueous sodium fluoride solution.
机译:由于痕量的电活性物质引起的法拉第电流,损害了通过压出水银滴的方法来准确测定水银界面处的表面电荷密度的问题。本文介绍了一种新型设计的悬挂式汞滴电极,该电极可将挤压电极面积精确控制在0.1%以内,并提供了一种新的可靠方法来校正法拉第电流。该程序基于首先在存在越来越多的电活性物质的情况下获得校正参数,然后将这些参数用于校正法拉第成分,从而获得电极的表面电荷密度。用微计算机控制的系统实施该方法提供了自动获取校正后的电极电荷密度值的函数,该值是电极电位的函数。用这种新方法获得的结果与通过其他方法获得的结果极为吻合,如氟化钠水溶液所示。

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