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Fundamental Thermodynamic modifications in Wagner's Equation in SoUd State Electrochemistry

机译:固态电化学中Wagner方程的基本热力学修正

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The use of samarium-doped ceria (SDC) electrolytes in SOFCs (solid oxide fuel cells) lowers the open circuit voltage (OCV) below the Nernst voltage (Vth). The OCV is calculated with Wagner's equation which is included in Nernst-Planck equation. Considering the separation of Boltzmann distribution, the fundamental basis of this topic is discussed. A constant voltage loss without leakage currents due to a mixed ionic and electronic conducting (MIEC) dense anode was explained. Only carrier species having sufficient energy to overcome the activation energy can contribute to current conduction, which is determined by incorporating a different constant in the definitions of chemical potential and electrical potential. This difference explains the results using dense MIEC anodes. This topic is not an isolated and minor topic, but of vital importance to electrochemical engineering for the 21St Century. Several future technological applications are also introduced.
机译:在SOFC(固体氧化物燃料电池)中使用掺mar的二氧化铈(SDC)电解质可将开路电压(OCV)降低到能斯特电压(Vth)以下。 OCV是使用Wagner方程计算的,该方程包含在Nernst-Planck方程中。考虑到玻尔兹曼分布的分离,讨论了该主题的基本基础。解释了由于混合的离子和电子导电(MIEC)致密阳极而产生的恒定电压损耗而没有泄漏电流。只有具有足够能量来克服活化能的载流子物种才能有助于电流传导,这是通过在化学势和电势的定义中加入不同的常数来确定的。这种差异解释了使用密集MIEC阳极的结果。该主题不是一个孤立且次要的主题,对于21世纪的电化学工程至关重要。还介绍了几种未来的技术应用。

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