首页> 外文会议>9th International conference on fuel cell science, engineering, and technology 2011 >HETEROFOAMS: ELECTRODE MODELING IN NANO-STRUCTURED HETEROGENEOUS MATERIALS FOR ENERGY SYSTEMS
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HETEROFOAMS: ELECTRODE MODELING IN NANO-STRUCTURED HETEROGENEOUS MATERIALS FOR ENERGY SYSTEMS

机译:异种泡沫:能量系统中纳米结构异质材料中的电极建模

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Heterogeneous Functional Materials, e.g., "HeteroFoaMs" are at the heart of countless energy systems, including (from left to right below) heat storage materials (a), batteries (b), solid oxide fuel cells (c), and polymer electrolyte fuel cells (d). HeteroFoaMs are generally nano-structured and porous to accommodate transport of gasses or fluids, and must be multifunctional (i.e., active operators on mass, momentum, energy or charge, in combinations). This paper will discuss several aspects of modeling the relationships between the constituents and microstructure of these material systems and their device functionalities. Technical advances based on these relationships will also be identified and discussed. Three major elements of the general problem of how to model HeteroFoaM electrodes will be addressed. Modeling approaches for ionic charge transfer with electrochemistry in the nano-structured porosity of the electrode will be discussed. Second, the effect of morphology and space charge on conduction through porous doped ceria particle assemblies, and their role in electrode processes will be modeled and described. And third, the effect of local heterogeneity and morphology on charge distributions and polarization in porous dielectric electrode materials will be analyzed using multi-physics field equations set on the details of local morphology. Several new analysis methods and results, as well as experimental data relating to these approaches will be presented. The value, capabilities, and limitations of the approaches will be evaluated.
机译:异构功能材料(例如“ HeteroFoaMs”)是无数能源系统的核心,包括(从左到右)储热材料(a),电池(b),固体氧化物燃料电池(c)和聚合物电解质燃料单元格(d)。异质泡沫通常是纳米结构的且多孔的,以适应气体或流体的输送,并且必须是多功能的(即,结合了质量,动量,能量或电荷的主动算子)。本文将讨论建模这些材料系统的组成与微观结构及其设备功能之间关系的几个方面。基于这些关系的技术进步也将被确定和讨论。将解决如何对HeteroFoaM电极建模的一般问题的三个主要要素。将讨论在电极的纳米结构孔隙度中利用电化学进行离子电荷转移的建模方法。其次,将对形态学和空间电荷对通过多孔掺杂二氧化铈粒子组件的传导的影响及其在电极过程中的作用进行建模和描述。第三,将使用设置在局部形貌细节上的多物理场方程分析局部异质性和形貌对多孔介电电极材料中电荷分布和极化的影响。将介绍几种新的分析方法和结果,以及与这些方法有关的实验数据。将评估这些方法的价值,功能和局限性。

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