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On the Thermodynamic Stability and the Kinetic Activity of SOFC Materials

机译:SOFC材料的热力学稳定性和动力学活性

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Materials research in solid oxide fuel cells has been driven by the recognition of developing novel constituents which enable faster kinetics and greater power, in order to reduce the cost of SOFC systems (e.g. $/kW). When an SOFC is operating with very high current density, the physical properties of its constituents may not be the same as those at conditions of low current density or open circuit voltage. This is particularly true for the SOFC cathode, the reduction electrode which dissociates oxygen molecules to oxygen ions, because the cathode is generally considered to be the cell component that limits the electrochemical performance of anode-supported planar SOFCs. The aim of this paper is to address a fundamental question: how do fast kinetics and high current in an operating SOFC affect the thermodynamic states of SOFC cathodes.
机译:固体氧化物燃料电池的材料研究受到了对开发新型成分的认可的推动,这些成分能够实现更快的动力学和更大的功率,从而降低SOFC系统的成本(例如,$ / kW)。当SOFC以非常高的电流密度运行时,其组成部分的物理特性可能与低电流密度或开路电压条件下的物理特性不同。对于SOFC阴极(将氧分子解离为氧离子的还原电极)尤其如此,因为通常认为阴极是限制阳极支撑平面SOFC电化学性能的电池组件。本文的目的是解决一个基本问题:正在运行的SOFC中的快速动力学和大电流如何影响SOFC阴极的热力学状态。

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