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Voltammetry under a Controlled Temperature Gradient

机译:受控温度梯度下的伏安法

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摘要

Electrochemical measurements are generally done under isothermal conditions. Here we report on the application of a controlled temperature gradient between the working electrode surface and the solution. Using electrochemical sensors prepared on ceramic materials with extremely high specific heat conductivity, the temperature gradient between the electrode and solution was applied here as a second driving force. This application of the Soret phenomenon increases the mass transfer in the Nernst layer and enables more accurate control of the electrode response enhancement by a combination of diffusion and thermal diffusion. We have thus studied the effect of Soret phenomenon by cyclic voltammetry measurements in ferro/ferricyanide. The time dependence of sensor response disappears when applying the Soret phenomenon, and the complicated shape of the cyclic voltammogram is replaced by a simple exponential curve. We have derived the Cotrell-Soret equation describing the steady-state response with an applied temperature difference.
机译:电化学测量通常在等温条件下进行。在这里,我们报告了工作电极表面和溶液之间受控温度梯度的应用。使用在具有极高比热导率的陶瓷材料上制备的电化学传感器,在此处施加电极和溶液之间的温度梯度作为第二驱动力。 Soret现象的这种应用增加了能斯特层中的传质,并通过扩散和热扩散的组合实现了电极响应增强的更精确控制。因此,我们通过循环伏安法测量了铁/铁氰化物中的Soret现象的影响。应用Soret现象时,传感器响应的时间相关性消失了,并且循环伏安图的复杂形状被一条简单的指数曲线所取代。我们推导了Cotrell-Soret方程,该方程描述了施加了温度差的稳态响应。

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