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Unfolding the Hidden Reactions in Galvanic Cells

机译:展开电流细胞中的隐性反应

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摘要

The relationship between the potential of the cell reaction ( E ~(cell)), the entropy change (Δ S ), and the enthalpy change (Δ H ) is well established. Yet, there is surprisingly a very narrow range of experimental aqueous galvanic cells that follow thermodynamic predictions. The redox and equilibrium reactions used within Pourbaix diagrams are presented a priori to establish the limitations and application range of thermodynamic relationships within complex electrochemical systems, the Zn-Cu (Daniell cell) and Pb-Cu cells. These are then tested to validate the theoretical discussion. Specifically, the electromotive force of both cells is measured as a function of the temperature in order to calculate the thermodynamic properties of the reaction: concomitantly to the voltage measurements, the temperature, the pH, and the surface state of the electrodes. Graphical Abstract.
机译:细胞反应的电位(E〜(细胞)),熵变化(δS)和焓变(δh)之间的关系。 然而,令人惊讶的是,遵循热力学预测的实验性水性电池等级的非常窄的范围。 在Poutbaix图中使用的氧化还原和平衡反应提出了在复杂电化学系统中的热力学关系,Zn-Cu(Daniell细胞)和Pb-Cu细胞内的热力学关系的限制和应用范围。 然后测试这些以验证理论讨论。 具体地,两种细胞的电动势被测量为温度的函数,以便计算反应的热力学性质:恰好地达到电极的电压测量,温度,pH和表面状态。 图形概要。

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